From 1e56f41f6aa264b1368d6cf78285be5cd183dca5 Mon Sep 17 00:00:00 2001 From: zRzRzRzRzRzRzR <2448370773@qq.com> Date: Thu, 14 May 2026 13:59:23 +0400 Subject: [PATCH] update --- .github/ISSUE_TEMPLATE/bug_report.yaml | 72 + .github/ISSUE_TEMPLATE/feature-request.yaml | 34 + .github/workflows/relay-ci.yml | 2 +- .github/workflows/relay-gui-build.yml | 2 +- .gitignore | 1 + .setup/plugins/amap/advanced-path.html | 256 - .setup/plugins/amap/bus-inquiry.html | 371 -- .setup/plugins/amap/convert.html | 191 - .setup/plugins/amap/direction.html | 693 --- .setup/plugins/amap/district.html | 244 - .setup/plugins/amap/georegeo.html | 322 -- .setup/plugins/amap/grasproad.html | 122 - .setup/plugins/amap/hardware-location.html | 148 - .setup/plugins/amap/info.html | 7 - .setup/plugins/amap/inputtips.html | 272 - .setup/plugins/amap/ip.html | 135 - .setup/plugins/amap/ipconfig.html | 172 - .setup/plugins/amap/newpoisearch.html | 444 -- .setup/plugins/amap/newroute.html | 552 -- .setup/plugins/amap/search.html | 706 --- .setup/plugins/amap/staticmaps.html | 195 - .setup/plugins/amap/summary.html | 4933 ----------------- .setup/plugins/amap/traffic-incident.html | 164 - .../amap/traffic-situation-inquiry.html | 486 -- .setup/plugins/amap/weatherinfo.html | 171 - .../aminer/64f02dc86221825d961dbde1.json | 1 - .../aminer/64f0386a6221825d961dbde2.json | 1 - .../aminer/64f03bf46221825d961dbde3.json | 1 - .../aminer/64f03e746221825d961dbde4.json | 1 - .../aminer/64f050189ceb91ca8b8b8159.json | 1 - .../aminer/650bfda4a35ad00c78dbb65e.json | 1 - .../aminer/650c01ada35ad00c78dbb65f.json | 1 - .../aminer/650c0336a35ad00c78dbb661.json | 1 - .../aminer/652252e007bac596e60d91da.json | 1 - .../aminer/6522534c07bac596e60d91db.json | 1 - .../aminer/652253c007bac596e60d91dc.json | 1 - .../aminer/6522545107bac596e60d91dd.json | 1 - .../aminer/6524f85a228b43f5d3572640.json | 1 - .../aminer/6524fa8c228b43f5d3572641.json | 1 - .../aminer/6524ff9a228b43f5d3572642.json | 1 - .../aminer/6525285f9a86cfd3829b5f7a.json | 1 - .../aminer/652529e09a86cfd3829b5f7b.json | 1 - .../aminer/65800e14520f9700eafa915f.json | 1 - .../aminer/65b397a19e2f618b047c463a.json | 1 - .../aminer/66471a81d0efa2bb8d4e8c08.json | 1 - .../aminer/6672475661739c3ac16fddfd.json | 1 - .../aminer/6673a6228e9e5687485aac1e.json | 1 - .../aminer/668d2176a7d554d2755425fe.json | 1 - .../aminer/668d238ba7d554d2755425ff.json | 1 - .../aminer/668d2542a7d554d275542600.json | 1 - .../aminer/671a19a46e728a29db292f73.json | 1 - .../aminer/676d1eaaa1e96db72a14e337.json | 1 - .../aminer/680f2c13879599061946769d.json | 1 - .../aminer/69314320b7a55c2e5218f96d.json | 1 - .setup/plugins/aminer/docs.json | 298 - .video/.seedance/v1/prompt.txt | 38 - .video/.seedance/v2/prompt-safe.txt | 15 - .video/.seedance/v2/prompt.txt | 19 - docs/relay-auto-skills.md | 2 +- relay/cli-anything-wave1.json | 282 - 60 files changed, 110 insertions(+), 11268 deletions(-) create mode 100644 .github/ISSUE_TEMPLATE/bug_report.yaml create mode 100644 .github/ISSUE_TEMPLATE/feature-request.yaml delete mode 100644 .setup/plugins/amap/advanced-path.html delete mode 100644 .setup/plugins/amap/bus-inquiry.html delete mode 100644 .setup/plugins/amap/convert.html delete mode 100644 .setup/plugins/amap/direction.html delete mode 100644 .setup/plugins/amap/district.html delete mode 100644 .setup/plugins/amap/georegeo.html delete mode 100644 .setup/plugins/amap/grasproad.html delete mode 100644 .setup/plugins/amap/hardware-location.html delete mode 100644 .setup/plugins/amap/info.html delete mode 100644 .setup/plugins/amap/inputtips.html delete mode 100644 .setup/plugins/amap/ip.html delete mode 100644 .setup/plugins/amap/ipconfig.html delete mode 100644 .setup/plugins/amap/newpoisearch.html delete mode 100644 .setup/plugins/amap/newroute.html delete mode 100644 .setup/plugins/amap/search.html delete mode 100644 .setup/plugins/amap/staticmaps.html delete mode 100644 .setup/plugins/amap/summary.html delete mode 100644 .setup/plugins/amap/traffic-incident.html delete mode 100644 .setup/plugins/amap/traffic-situation-inquiry.html delete mode 100644 .setup/plugins/amap/weatherinfo.html delete mode 100644 .setup/plugins/aminer/64f02dc86221825d961dbde1.json delete mode 100644 .setup/plugins/aminer/64f0386a6221825d961dbde2.json delete mode 100644 .setup/plugins/aminer/64f03bf46221825d961dbde3.json delete mode 100644 .setup/plugins/aminer/64f03e746221825d961dbde4.json delete mode 100644 .setup/plugins/aminer/64f050189ceb91ca8b8b8159.json delete mode 100644 .setup/plugins/aminer/650bfda4a35ad00c78dbb65e.json delete mode 100644 .setup/plugins/aminer/650c01ada35ad00c78dbb65f.json delete mode 100644 .setup/plugins/aminer/650c0336a35ad00c78dbb661.json delete mode 100644 .setup/plugins/aminer/652252e007bac596e60d91da.json delete mode 100644 .setup/plugins/aminer/6522534c07bac596e60d91db.json delete mode 100644 .setup/plugins/aminer/652253c007bac596e60d91dc.json delete mode 100644 .setup/plugins/aminer/6522545107bac596e60d91dd.json delete mode 100644 .setup/plugins/aminer/6524f85a228b43f5d3572640.json delete mode 100644 .setup/plugins/aminer/6524fa8c228b43f5d3572641.json delete mode 100644 .setup/plugins/aminer/6524ff9a228b43f5d3572642.json delete mode 100644 .setup/plugins/aminer/6525285f9a86cfd3829b5f7a.json delete mode 100644 .setup/plugins/aminer/652529e09a86cfd3829b5f7b.json delete mode 100644 .setup/plugins/aminer/65800e14520f9700eafa915f.json delete mode 100644 .setup/plugins/aminer/65b397a19e2f618b047c463a.json delete mode 100644 .setup/plugins/aminer/66471a81d0efa2bb8d4e8c08.json delete mode 100644 .setup/plugins/aminer/6672475661739c3ac16fddfd.json delete mode 100644 .setup/plugins/aminer/6673a6228e9e5687485aac1e.json delete mode 100644 .setup/plugins/aminer/668d2176a7d554d2755425fe.json delete mode 100644 .setup/plugins/aminer/668d238ba7d554d2755425ff.json delete mode 100644 .setup/plugins/aminer/668d2542a7d554d275542600.json delete mode 100644 .setup/plugins/aminer/671a19a46e728a29db292f73.json delete mode 100644 .setup/plugins/aminer/676d1eaaa1e96db72a14e337.json delete mode 100644 .setup/plugins/aminer/680f2c13879599061946769d.json delete mode 100644 .setup/plugins/aminer/69314320b7a55c2e5218f96d.json delete mode 100644 .setup/plugins/aminer/docs.json delete mode 100644 .video/.seedance/v1/prompt.txt delete mode 100644 .video/.seedance/v2/prompt-safe.txt delete mode 100644 .video/.seedance/v2/prompt.txt delete mode 100644 relay/cli-anything-wave1.json diff --git a/.github/ISSUE_TEMPLATE/bug_report.yaml b/.github/ISSUE_TEMPLATE/bug_report.yaml new file mode 100644 index 00000000..8e9bf5a7 --- /dev/null +++ b/.github/ISSUE_TEMPLATE/bug_report.yaml @@ -0,0 +1,72 @@ +name: "\U0001F41B Bug Report" +description: Submit a bug report to help us improve Synapse / 提交一个 Bug 问题报告来帮助我们改进 Synapse +body: + - type: textarea + id: system-info + attributes: + label: System Info / 系統信息 + description: Your operating environment / 您的运行环境信息 + placeholder: Includes Cuda version, Transformers version, Python version, operating system, hardware information (if you suspect a hardware problem)... / 包括Cuda版本,Transformers版本,Python版本,操作系统,硬件信息(如果您怀疑是硬件方面的问题)... + validations: + required: true + + - type: textarea + id: who-can-help + attributes: + label: Who can help? / 谁可以帮助到您? + description: | + Your issue will be replied to more quickly if you can figure out the right person to tag with @ + All issues are read by one of the maintainers, so if you don't know who to tag, just leave this blank and our maintainer will ping the right person. + + Please tag fewer than 3 people. + + 如果您能找到合适的标签 @,您的问题会更快得到回复。 + 所有问题都会由我们的维护者阅读,如果您不知道该标记谁,只需留空,我们的维护人员会找到合适的开发组成员来解决问题。 + + 标记的人数应该不超过 3 个人。 + + If it's not a bug in these three subsections, you may not specify the helper. Our maintainer will find the right person in the development group to solve the problem. + + 如果不是这三个子版块的bug,您可以不指明帮助者,我们的维护人员会找到合适的开发组成员来解决问题。 + + placeholder: "@Username ..." + + - type: checkboxes + id: information-scripts-examples + attributes: + label: Information / 问题信息 + description: "The problem arises when using: / 问题出现在" + options: + - label: "The official example scripts / 官方的示例脚本" + - label: "My own modified scripts / 我自己修改的脚本和任务" + + - type: textarea + id: reproduction + validations: + required: true + attributes: + label: Reproduction / 复现过程 + description: | + Please provide a code example that reproduces the problem you encountered, preferably with a minimal reproduction unit. + If you have code snippets, error messages, stack traces, please provide them here as well. + Please format your code correctly using code tags. See https://help.github.com/en/github/writing-on-github/creating-and-highlighting-code-blocks#syntax-highlighting + Do not use screenshots, as they are difficult to read and (more importantly) do not allow others to copy and paste your code. + + 请提供能重现您遇到的问题的代码示例,最好是最小复现单元。 + 如果您有代码片段、错误信息、堆栈跟踪,也请在此提供。 + 请使用代码标签正确格式化您的代码。请参见 https://help.github.com/en/github/writing-on-github/creating-and-highlighting-code-blocks#syntax-highlighting + 请勿使用截图,因为截图难以阅读,而且(更重要的是)不允许他人复制粘贴您的代码。 + placeholder: | + Steps to reproduce the behavior/复现Bug的步骤: + + 1. + 2. + 3. + + - type: textarea + id: expected-behavior + validations: + required: true + attributes: + label: Expected behavior / 期待表现 + description: "A clear and concise description of what you would expect to happen. /简单描述您期望发生的事情。" diff --git a/.github/ISSUE_TEMPLATE/feature-request.yaml b/.github/ISSUE_TEMPLATE/feature-request.yaml new file mode 100644 index 00000000..2d53e84d --- /dev/null +++ b/.github/ISSUE_TEMPLATE/feature-request.yaml @@ -0,0 +1,34 @@ +name: "\U0001F680 Feature request" +description: Submit a request for a new Synapse feature / 提交一个新的 Synapse 的功能建议 +labels: ["feature"] +body: + - type: textarea + id: feature-request + validations: + required: true + attributes: + label: Feature request / 功能建议 + description: | + A brief description of the functional proposal. Links to corresponding papers and code are desirable. + 对功能建议的简述。最好提供对应的论文和代码链接 + + - type: textarea + id: motivation + validations: + required: true + attributes: + label: Motivation / 动机 + description: | + Your motivation for making the suggestion. If that motivation is related to another GitHub issue, link to it here. + 您提出建议的动机。如果该动机与另一个 GitHub 问题有关,请在此处提供对应的链接。 + + - type: textarea + id: contribution + validations: + required: true + attributes: + label: Your contribution / 您的贡献 + description: | + + Your PR link or any other link you can help with. + 您的PR链接或者其他您能提供帮助的链接。 diff --git a/.github/workflows/relay-ci.yml b/.github/workflows/relay-ci.yml index 011190ee..46a4e7e8 100644 --- a/.github/workflows/relay-ci.yml +++ b/.github/workflows/relay-ci.yml @@ -139,7 +139,7 @@ jobs: relay/internal/nodebundle/assets relay/internal/chromemcpbundle/assets relay/internal/commandlinebundle/assets - key: relay-runtime-bundle-${{ runner.os }}-${{ matrix.suffix }}-${{ env.BUNDLED_NODE_VERSION }}-${{ env.CHROME_DEVTOOLS_MCP_VERSION }}-${{ env.BUNDLED_PYTHON_VERSION }}-${{ env.BUNDLED_PYTHON_STANDALONE_RELEASE }}-${{ env.BUNDLED_WINDOWS_GIT_VERSION }}-${{ env.BUNDLED_FFMPEG_RELEASE_TAG }}-${{ env.COMMANDLINE_PACKAGE_PROFILE }}-${{ hashFiles('.gitmodules', 'relay/cli-anything-wave1.json', 'relay/scripts/prepare-node-bundle.mjs', 'relay/scripts/prepare-chrome-devtools-bundle.mjs', 'relay/scripts/prepare-commandline-bundle.mjs', 'relay/scripts/lib/subprojects.mjs', 'subprojects/cli-anything/**/agent-harness/setup.py', 'subprojects/cli-anything/**/agent-harness/cli_anything/**') }} + key: relay-runtime-bundle-${{ runner.os }}-${{ matrix.suffix }}-${{ env.BUNDLED_NODE_VERSION }}-${{ env.CHROME_DEVTOOLS_MCP_VERSION }}-${{ env.BUNDLED_PYTHON_VERSION }}-${{ env.BUNDLED_PYTHON_STANDALONE_RELEASE }}-${{ env.BUNDLED_WINDOWS_GIT_VERSION }}-${{ env.BUNDLED_FFMPEG_RELEASE_TAG }}-${{ env.COMMANDLINE_PACKAGE_PROFILE }}-${{ hashFiles('.gitmodules', 'relay/managed-command-providers.json', 'relay/scripts/prepare-node-bundle.mjs', 'relay/scripts/prepare-chrome-devtools-bundle.mjs', 'relay/scripts/prepare-commandline-bundle.mjs', 'relay/scripts/lib/subprojects.mjs', 'subprojects/cli-anything/**/agent-harness/setup.py', 'subprojects/cli-anything/**/agent-harness/cli_anything/**') }} - uses: actions/setup-node@v4 with: diff --git a/.github/workflows/relay-gui-build.yml b/.github/workflows/relay-gui-build.yml index eb84d5ba..e1ce50dd 100644 --- a/.github/workflows/relay-gui-build.yml +++ b/.github/workflows/relay-gui-build.yml @@ -106,7 +106,7 @@ jobs: relay/internal/nodebundle/assets relay/internal/chromemcpbundle/assets relay/internal/commandlinebundle/assets - key: relay-runtime-bundle-${{ runner.os }}-${{ matrix.suffix }}-${{ env.BUNDLED_NODE_VERSION }}-${{ env.CHROME_DEVTOOLS_MCP_VERSION }}-${{ env.BUNDLED_PYTHON_VERSION }}-${{ env.BUNDLED_PYTHON_STANDALONE_RELEASE }}-${{ env.BUNDLED_WINDOWS_GIT_VERSION }}-${{ env.BUNDLED_FFMPEG_RELEASE_TAG }}-${{ env.COMMANDLINE_PACKAGE_PROFILE }}-${{ hashFiles('.gitmodules', 'relay/cli-anything-wave1.json', 'relay/scripts/prepare-node-bundle.mjs', 'relay/scripts/prepare-chrome-devtools-bundle.mjs', 'relay/scripts/prepare-commandline-bundle.mjs', 'relay/scripts/lib/subprojects.mjs', 'subprojects/cli-anything/**/agent-harness/setup.py', 'subprojects/cli-anything/**/agent-harness/cli_anything/**') }} + key: relay-runtime-bundle-${{ runner.os }}-${{ matrix.suffix }}-${{ env.BUNDLED_NODE_VERSION }}-${{ env.CHROME_DEVTOOLS_MCP_VERSION }}-${{ env.BUNDLED_PYTHON_VERSION }}-${{ env.BUNDLED_PYTHON_STANDALONE_RELEASE }}-${{ env.BUNDLED_WINDOWS_GIT_VERSION }}-${{ env.BUNDLED_FFMPEG_RELEASE_TAG }}-${{ env.COMMANDLINE_PACKAGE_PROFILE }}-${{ hashFiles('.gitmodules', 'relay/managed-command-providers.json', 'relay/scripts/prepare-node-bundle.mjs', 'relay/scripts/prepare-chrome-devtools-bundle.mjs', 'relay/scripts/prepare-commandline-bundle.mjs', 'relay/scripts/lib/subprojects.mjs', 'subprojects/cli-anything/**/agent-harness/setup.py', 'subprojects/cli-anything/**/agent-harness/cli_anything/**') }} - uses: actions/setup-go@v5 with: diff --git a/.gitignore b/.gitignore index f9a5abab..8f7dfa6a 100644 --- a/.gitignore +++ b/.gitignore @@ -1,3 +1,4 @@ +.idea node_modules/ dist/ .next/ diff --git a/.setup/plugins/amap/advanced-path.html b/.setup/plugins/amap/advanced-path.html deleted file mode 100644 index 987b4fa0..00000000 --- a/.setup/plugins/amap/advanced-path.html +++ /dev/null @@ -1,256 +0,0 @@ -
-

- 高级路径规划 - 最后更新时间: 2025年09月24日 -

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产品介绍

高级路径规划 API 是一套以 HTTP 形式提供的接口,未来路径规划 API 用于查询未来7天的路径规划结果。

提示

高级路径规划接口属于高级服务接口,目前只向企业开发者开放。如需申请,可进行 商务咨询

适用场景

该服务适用于需要实时路况信息和路径规划的场景,帮助优化路线和提高出行效率。

使用说明

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第一步
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成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

未来路径规划

未来路径规划 API 服务地址

URL

请求方式

https://restapi.amap.com/v4/etd/driving?parameters

GET

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parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数

含义

规则

是否必填

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

origin

出发点

规则: lon,lat(经度,纬度), “,”分割,如 117.500244, 40.417801     经纬度小数点不超过6位

destination

目的地

规则: lon,lat(经度,纬度), “,”分割,如 117.500244, 40.417801     经纬度小数点不超过6位

strategy

规划策略

1.返回的结果考虑路况,尽量躲避拥堵而规划路径,与高德地图的“躲避拥堵”策略一致

2.返回的结果不走高速,与高德地图“不走高速”策略一致

3.返回的结果尽可能规划收费较低甚至免费的路径,与高德地图“避免收费”策略一致

4.返回的结果考虑路况,尽量躲避拥堵而规划路径,并且不走高速,与高德地图的“躲避拥堵&不走高速”策略一致

5.返回的结果尽量不走高速,并且尽量规划收费较低甚至免费的路径结果,与高德地图的“避免收费&不走高速”策略一致

6.返回路径规划结果会尽量的躲避拥堵,并且规划收费较低甚至免费的路径结果,与高德地图的“躲避拥堵&避免收费”策略一致

7.返回的结果尽量躲避拥堵,规划收费较低甚至免费的路径结果,并且尽量不走高速路,与高德地图的“避免拥堵&避免收费&不走高速”策略一致

8.返回的结果会优先选择高速路,与高德地图的“高速优先”策略一致

9.返回的结果会优先考虑高速路,并且会考虑路况躲避拥堵,与高德地图的“躲避拥堵&高速优先”策略一致

10.不考虑路况,返回速度最优、耗时最短的路线,但是此路线不一定距离最短

11.避让拥堵&速度优先&避免收费

1

province

用汉字填入车牌省份缩写,用于判断是否限行

例如:京

number

填入除省份及标点之外,车牌的字母和数字(需大写)。用于判断限行相关。

例如:NH1N11

支持6位传统车牌和7位新能源车牌

cartype

车辆类型

0:普通汽车(默认值) -1:纯电动车 -2:插电混动车

0

firsttime

出发时间,第一个时间戳

unix 时间戳,精确到秒

interval

时间间隔

单位:秒

count

时间点个数

最多支持48个

callback

回调函数

callback 值是用户定义的函数名称

服务示例

https://restapi.amap.com/v4/etd/driving?origin=116.397455,39.909187&destination=116.412422,39.908966&firsttime=1678583200&interval=30&count=10&key=<用户的key>

示例代码中的firsttime参数,请在使用时将其替换为未来的日期,以避免接口报错。

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参数

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origin

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出发点,规则: lon,lat(经度,纬度), “,”分割,如 117.500244, 40.417801 经纬度小数点不超过 6 位

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destination

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interval

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返回结果参数说明

返回参数

含义说明

errcode

返回状态编码,0 表示成功

errmsg

返回状态说明。

成功时返回 OK ,其他错误返回错误信息。

errdetail

返回错误详细原因

data

返回结果数据

paths

路径规划方案,列表

distance

行驶距离,单位:米

traffic_lights

红绿灯个数

steps

导航路段,列表

adcode

途径区域的区域代码

road

道路名称

distance

路段距离

toll

道路属性字段,是否收费,0:不收费,1:收费。

polyline

路段坐标点串

time_infos

不同时间的规划以及信息列表

starttime

出发时间,Unix 时间戳精确到毫秒

elements

路线列表

pathindex

对应的路线

duration

总时长,单位:分钟

tolls

总收费,单位:元

restriction

0:代表限行已规避或未限行,即该路线没有限行路段 -1:代表限行无法规避,即该线路有限行路段

tmcs

路况信息

status

路况状态

polyline

路段坐标点

-
diff --git a/.setup/plugins/amap/bus-inquiry.html b/.setup/plugins/amap/bus-inquiry.html deleted file mode 100644 index 467e9830..00000000 --- a/.setup/plugins/amap/bus-inquiry.html +++ /dev/null @@ -1,371 +0,0 @@ -
-

- 公交信息查询 - 最后更新时间: 2026年02月02日 -

-

产品介绍

公交信息查询 API 一套以 HTTP 形式提供的包括:公交站 ID 查询、公交站关键字查询、公交路线 ID 查询、公交路线关键字查询,返回 JSON 或 XML 格式的查询数据,用于实现公交信息查询功能的开发。 

提示

公交信息查询接口属于高级服务接口,如需申请,可进行 商务咨询

适用场景

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

公交站 ID 查询

公交站 ID 查询 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/bus/stopid?parameters 

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

名称

含义

规则说明

是否必填

缺省值

key

用户唯一标识 

用户在高德地图官网 申请 Web 服务 API 类型Key

sig

签名

选择数字签名认证的付费用户必填,数字签名获取和使用方法

id

公交站 id

output 

返回数据格式类型 

可选:JSON、XML

JSON

extensions

控制返回内容

base:返回公交路线基本信息

否 

base 

服务示例

https://restapi.amap.com/v3/bus/stopid?key=<用户的key>&id=BV10006672&output=xml
- - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

id

-
-
-
-
-
-
-

公交站 id

-
-

-
-

返回结果参数说明

关键字搜索的响应结果的格式由请求参数 output 指定。

名称

含义

说明

status

返回结果状态值

值为 0 或 1,0 表示失败;1 表示成功

info 

返回状态说明

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

返回状态说明

返回状态说明,10000 代表正确,详情参阅 info 状态表

busstops

公交车站信息列表

id

公交站 id

name

公交站名

location

经纬度

adcode

城市 adcode

citycode

城市 citycode

buslines

途径此站的公交路线列表

id

公交线路唯一 id

location

公交线路途径此站的经纬度

name

线路名称

start_stop

首发站

end_stop

末站

公交站关键字查询

公交站关键字查询 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/bus/stopname?parameters 

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

名称

含义

规则说明

是否必填

缺省值

key

用户唯一标识 

用户在高德地图官网 申请 Web 服务 API 类型Key

sig

签名

选择数字签名认证的付费用户必填,数字签名获取和使用方法

keywords

查询关键字

只支持一个关键字

city

城市

支持 adcode、citycode

adcode 信息可参考城市编码表获取

offset

每页记录数据

最大 100

20

page

当前页面

最大 100

1

output 

返回数据格式类型 

可选:JSON、XML

JSON

extensions

控制返回内容

base:返回公交路线基本信息

否 

base 

服务示例

https://restapi.amap.com/v3/bus/stopname?key=<用户的key>&city=110000&keywords=来广营路口西
- - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

keywords

-
-
-
-
-
-
-

查询关键字,只支持一个关键字

-
-

-
-

city

-
-
-
-
-
-
-

城市,支持 adcode、citycode
- adcode 信息可参考城市编码表获取

-
-

-
-

返回结果参数说明

关键字搜索的响应结果的格式由请求参数 output 指定。

名称

含义

说明

status

返回结果状态值

值为 0 或 1,0 表示请求失败;1 表示请求成功

info 

返回状态说明

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

返回状态说明

返回状态说明,10000 代表正确,详情参阅 info 状态表

busstops

公交车站信息列表

id

公交站 id

name

公交站名

location

经纬度

adcode

城市 adcode

citycode

城市 citycode

buslines

途径此站的公交路线列表

id

公交线路唯一 id

location

公交线路途径此站的经纬度

name

线路名称

start_stop

首发站

end_stop

末站

公交路线 ID 查询

公交路线 ID 查询 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/bus/lineid?parameters 

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

必填

默认值

key

用户唯一标识

用户在高德地图官网 申请 Web 服务 API 类型Key

id

公交线路 id

有效的高德公交线路 id

output

返回数据格式类型 

可选:JSON、XML

JSON

extensions

控制返回结果

可选:base,all

base:返回公交路线基本信息

all:返回基本+详细信息(详细信息包含途径站点,首末班车时间等)

base

服务示例

https://restapi.amap.com/v3/bus/lineid?key=<用户的key>&id=131000010042
- - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

id

-
-
-
-
-
-
-

有效的高德公交线路 id

-
-

-
-

返回结果参数说明

关键字搜索的响应结果的格式由请求参数 output 指定。

名称

含义

规则

status

返回结果状态值

值为 0 或 1,0 表示失败;1 表示成功

info 

返回状态说明

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

返回状态说明

返回状态说明,10000 代表正确,详情参阅 info 状态表

count

结果数

buslines

公交线路信息

id

公交线路 id

type

公交类型

普通公交 -地铁 -轻轨 -有轨电车 -无轨电车 -旅游专线 -机场大巴 -社区专车 -磁悬浮列车 -轮渡 -索道交通 -其他

name

线路名称

polyline

坐标串

citycode

城市的 citycode

start_stop

首发站

end_stop

末站

start_time

首班车时间

end_time

末班车时间

uicolor

线路 ui 颜色

部分线路返回颜色

timedesc

线路详细时间

 内容为 JSON 串,需要解码并做内容解析

distance

全程里程,单位:公里

loop

是否环线

0:否

1:是

status

线路状态

0:停运

1:正常

2:规划中

3:在建

direc

反向线路 id

如果有反向线路,则记录对向线路,如果没有反向线路,则记录自身。

company

所属公司

distance

线路长度

单位:公里

basic_price

起步价,单位:元

total_price

全程票价,单位:元

bounds

矩形区域

busstops

途径站

id

公交站 ID

name

公交站名

location

公交站经纬度

sequence

公交站序号

公交路线关键字查询

公交路线关键字查询 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/bus/linename?parameters 

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

名称

含义

规则说明

是否必填

缺省值

key

用户唯一标识 

用户在高德地图官网 申请 Web 服务 API 类型Key

sig

签名

选择数字签名认证的付费用户必填,数字签名获取和使用方法

keywords

查询关键字

只支持一个关键字

city

城市

可选值:cityname(中文或中文全拼)、citycode、adcode -默认值:"全国”

adcode 信息可参考城市编码表获取

offset

每页记录数据

规则:大于 100 按默认值 -默认值:20

20

page

当前页数

规则:最大翻页数 10 -默认值:1

否 

1

extensions

控制返回内容

可选:

base:返回公交路线基本信息

all:返回基本+详细信息(详细信息包含途径站点,首末班车时间等)

base

output 

返回数据格式类型

可选:JSON、XML

JSON

服务示例

https://restapi.amap.com/v3/bus/linename?
-extensions=base&keywords=451&offset=20&city=110000&page=1&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

keywords

-
-
-
-
-
-
-

查询关键字,只支持一个关键字

-
-

-
-

city

-
-
-
-
-
-
-

- 城市,支持 adcode、citycode
- adcode 信息可参考城市编码表获取
-

-
-

-
-

返回结果参数说明

关键字搜索的响应结果的格式由请求参数 output 指定。

名称

含义

说明

extensions何值值显示

status

返回结果状态值

值为 0 或 1,0 表示失败;1 表示成功

base/all

info 

返回状态说明

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

base/all 

infocode

返回状态说明

返回状态说明,10000 代表正确,详情参阅 info 状态表

base/all 

buslines

公交路线的集合

base/all 

id

唯一 id

base/all 

type

公交类型

base/all 

name

线路名称

base/all 

polyline

线路的坐标串

base/all 

citycode

城市的 adcode

base/all 

start_stop

始发站

base/all 

end_stop

终点站

base/all 

-
diff --git a/.setup/plugins/amap/convert.html b/.setup/plugins/amap/convert.html deleted file mode 100644 index 561ce552..00000000 --- a/.setup/plugins/amap/convert.html +++ /dev/null @@ -1,191 +0,0 @@ -
-

- 坐标转换 - 最后更新时间: 2026年02月02日 -

-

产品介绍

坐标转换是一类简单的 HTTP 接口,能够将用户输入的非高德坐标(GPS 坐标、mapbar 坐标、baidu 坐标)转换成高德坐标。

适用场景

为了使用高德服务,用户需要将非高德坐标转换为高德坐标。

使用限制

 服务调用量的限制请点击 这里 查阅。  

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

坐标转换

坐标转换 API 服务地址:

URL

请求方式

https://restapi.amap.com/v3/assistant/coordinate/convert?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

locations

坐标点

经度和纬度用","分割,经度在前,纬度在后,经纬度小数点后不得超过6位。多个坐标对之间用”|”进行分隔最多支持40对坐标。

必填

coordsys

原坐标系

可选值:

gps;

mapbar;

baidu;

autonavi(不进行转换)

可选

autonavi

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回数据格式类型

可选值:JSON,XML

可选

JSON

返回结果参数说明

坐标转换的响应结果的格式由请求参数 output 指定。

名称

含义

规则说明

status

返回状态

值为0或1

1:成功;0:失败

info

返回的状态信息

status 为0时,info 返回错误原;否则返回“OK”。详情参阅 info 状态表

locations

转换之后的坐标。若有多个坐标,则用 “;”进行区分和间隔

服务示例

https://restapi.amap.com/v3/assistant/coordinate/convert?locations=116.481499,39.990475&coordsys=gps&output=xml&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

locations

-
-
-
-
-
-
-

坐标点,经度和纬度用“,”分割,经度在前,纬度在后,经纬度小数点后不得超过6位。多个坐标对之间用“|”进行分隔最多支持40对坐标。

-
-

-
-

coordsys

-
-
-
-
-
-
-

- 原坐标系,可选值:gps;mapbar;baidu;autonavi(不进行转换)
- 默认:autonavi
-

-
-

-
-
-
diff --git a/.setup/plugins/amap/direction.html b/.setup/plugins/amap/direction.html deleted file mode 100644 index 85569184..00000000 --- a/.setup/plugins/amap/direction.html +++ /dev/null @@ -1,693 +0,0 @@ -
-

- 路径规划 - 最后更新时间: 2026年02月02日 -

-

产品介绍

路径规划 API 是一套以 HTTP 形式提供的步行、公交、驾车查询及行驶距离计算接口,返回 JSON 或 XML 格式的查询数据,用于实现路径规划功能的开发。 

由于道路/数据/算法的变更,很可能存在间隔一段时间后请求相同起终点的经纬度返回不同结果。

适用场景

使用限制

服务调用量的限制请点击 这里 查阅。 

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

步行路径规划

步行路径规划 API 可以规划100km 以内的步行通勤方案,并且返回通勤方案的数据。最大支持 100km 的步行路线规划。

步行路径规划 API URL

URL

请求方式

https://restapi.amap.com/v3/direction/walking?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

origin

出发点

规则: lon,lat(经度,纬度), “,”分割,如117.500244, 40.417801     经纬度小数点不超过6位

必填

destination

目的地

规则: lon,lat(经度,纬度), “,”分割,如117.500244, 40.417801     经纬度小数点不超过6位

必填

origin_id

起点 POI ID

起点为 POI 时,建议填充此值,可提升路线规划准确性

可选

destination_id

目的地 POI ID

目的地为 POI 时,建议填充此值,可提升路线规划准确性

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回数据格式类型

可选值:JSON,XML

可选

JSON

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

可选

服务示例

https://restapi.amap.com/v3/direction/walking?origin=116.434307,39.90909&destination=116.434446,39.90816&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

origin

-
-
-
-
-
-
-

lon,lat(经度,纬度),如117.500244, 40.417801 经纬度小数点不超过6位

-
-

-
-

destination

-
-
-
-
-
-
-

- lon,lat(经度,纬度),如117.500244, 40.417801 经纬度小数点不超过6位 - -  -

-
-

-
-

返回结果参数说明

步行规划的响应结果的格式由请求参数 output 指定

名称

含义

规则说明

status

返回状态

值为0或1

1:成功;0:失败

info

返回的状态信息

status 为0时,info 返回错误原;否则返回“OK”。详情参阅 info 状态表

count

返回结果总数目

route

路线信息列表

origin

起点坐标

destination

终点坐标

paths

步行方案

distance

起点和终点的步行距离

单位:米

duration

步行时间预计

单位:秒

steps

返回步行结果列表

step

每段步行方案

instruction

路段步行指示

road

道路名称

distance

此路段距离

单位:米

orientation

方向

duration

此路段预计步行时间

polyline

此路段坐标点

action

步行主要动作

详情见 步行动作列表

assistant_action

步行辅助动作

详情见 步行动作列表

walk_type

这段路是否存在特殊的方式

0,普通道路

1,人行横道

3,地下通道

4,过街天桥

5,地铁通道

6,公园

7,广场

8,扶梯

9,直梯

10,索道

11,空中通道

12,建筑物穿越通道

13,行人通道

14,游船路线

15,观光车路线

16,滑道

18,扩路

19,道路附属连接线

20,阶梯

21,斜坡

22,桥

23,隧道

30,轮渡

  • 步行动作列表

主要动作列表

辅助动作列表

无基本导航动作

无辅助导航动作

左转

左转

右转

右转

向左前方

向左前方

向右前方

向右前方

向左后方

向左后方

向右后方

向右后方

直行

往后走

靠左

往前走

靠右

靠左

通过人行横道

靠右

通过过街天桥

通过人行横道

通过地下通道

通过过街天桥

通过广场

通过地下通道

到道路斜对面

通过广场

到达目的地

进入右侧道路

进入左侧道路

公交路径规划

公交路径规划 API 可以规划综合各类公共(火车、公交、地铁)交通方式的通勤方案,并且返回通勤方案的数据。

公交路径规划 API URL:

URL

请求方式

https://restapi.amap.com/v3/direction/transit/integrated?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

origin

出发点

规则: lon,lat(经度,纬度), “,”分割,如117.500244, 40.417801     经纬度小数点不超过6位

必填

destination

目的地

规则: lon,lat(经度,纬度), “,”分割,如117.500244, 40.417801     经纬度小数点不超过6位

必填

city

城市/跨城规划时的起点城市

目前支持市内公交换乘/跨城公交的起点城市。

可选值:城市名称/citycode

必填

cityd

跨城公交规划时的终点城市

跨城公交规划必填参数。

可选值:城市名称/citycode

可选

( 跨城必填 )

extensions

返回结果详略

可选值:base(default)/all

base:返回基本信息;all:返回全部信息

可选

base

strategy

公交换乘策略

可选值:

0:最快捷模式;

1:最经济模式;

2:最少换乘模式;

3:最少步行模式;

5:不乘地铁模式

可选

0

nightflag

是否计算夜班车

可选值:

0:不计算夜班车;

1:计算夜班车

可选

0

date

出发日期

根据出发时间和日期,筛选可乘坐的公交路线,格式示例:date=2014-3-19。在无需设置预计出发时间时,请不要在请求之中携带此参数。

可选

time

出发时间

根据出发时间和日期,筛选可乘坐的公交路线,格式示例:time=22:34。在无需设置预计出发时间时,请不要在请求之中携带此参数。

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回数据格式类型

可选值:JSON,XML

可选

JSON

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

可选

服务示例

https://restapi.amap.com/v3/direction/transit/integrated?origin=116.481499,39.990475&destination=116.465063,39.999538&city=010&output=xml&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

origin

-
-
-
-
-
-
-

lon,lat(经度,纬度),如117.500244, 40.417801 经纬度小数点不超过6位

-
-

-
-

destination

-
-
-
-
-
-
-

- lon,lat(经度,纬度),如117.500244, 40.417801 经纬度小数点不超过6位 -

-
-

-
-

city

-
-
-
-
-
-
-

- - 支持市内公交换乘/跨城公交的起点城市,规则:城市名称/citycode - -

-
-

-
-

cityd

-
-
-
-
-
-
-

- - 跨城公交规划必填参数。规则:城市名称/citycode - -

-
-

-
-

strategy

-
-
-
- -
-
-
-

- - 0:最快捷模式;
- 1:最经济模式;
- 2:最少换乘模式;
- 3:最少步行模式;
- 5:不乘地铁模式 -
-

-
-

-
-

nightflag

-
-
-
- -
-
-
-

- - 是否计算夜班车,1:是;0:否 - -

-
-

-
-

返回结果参数说明

公交规划的响应结果的格式由请求参数 output 指定。

名称

含义

规则说明

status

返回状态

值为0或1

1:成功;0:失败

info

返回的状态信息

status 为0时,info 返回错误原;否则返回“OK”。详情参阅 info 状态表

count

公交换乘方案数目

route

公交换乘信息列表

origin

起点坐标

destination

终点坐标

distance

起点和终点的步行距离

单位:米

taxi_cost

出租车费用

单位:元

transits

公交换乘方案列表

transit

公交换乘方案

cost

此换乘方案价格

单位:元

duration

此换乘方案预期时间

单位:秒

nightflag

是否是夜班车

0:非夜班车;1:夜班车

walking_distance

此方案总步行距离

单位:米

emergency

取值为all时返回

linetype

事件类型

1:影响乘坐;2:不影响乘坐

eventTagDesc

事件标签

值为:"提示“、”甩站“、”突发“、”停运“

ldescription

事件的线路上的文案

busid

线路id

busname

线路名

segments

换乘路段列表

walking

此路段步行导航信息

详见 步行方案信息列表

bus

此路段公交导航信息

详见 公交方案信息列表

entrance

地铁入口

只在地铁路段有值,详见 出入口信息列表

exit

地铁出口

只在地铁路段有值,详见 出入口信息列表

railway

乘坐火车的信息

详情见只在地铁路段有值,详见 火车换乘信息列表

  • 步行方案信息列表

名称

含义

规则说明

origin

起点坐标

destination

终点坐标

distance

每段线路步行距离

单位:米

duration

步行预计时间

单位:秒

steps

步行路段列表

instruction

此段路的行走介绍

road

路的名字

distance 

此段路的距离

duration

此段路预计消耗时间

单位:秒

polyline

此段路的坐标

action

步行主要动作

assistant_action

步行辅助动作

  • 公交方案信息列表

名称

含义

规则说明

  buslines  

步行路段列表

 departure_stop 

此段起乘站信息

格式如:中关村

name

站点名字

id

站点 id

location

站点经纬度

 arrival_stop 

此段下车站

格式如:中关村

name

 站点名字 

id

 站点 id 

location

 站点经纬度 

name 

公交路线名称

格式如:445路(南十里居--地铁望京西站)

id

公交路线 id

type 

公交类型

格式如:地铁线路

distance 

公交行驶距离

单位:米

duration 

公交预计行驶时间

单位:秒

polyline 

此路段坐标集

格式为坐标串,如:116.481247,39.990704;116.481270,39.990726

start_time 

首班车时间

格式如:0600,代表06:00

end_time 

末班车时间

格式如:2300,代表23:00

station_start_time

上车站点首班时间

格式如:0600,代表06:00

station_end_time

上车站点末班时间

格式如:2300,代表23:00

via_num 

此段途经公交站数

via_stops 

此段途经公交站点列表

name 

途径公交站点信息

id

公交站点编号

location

公交站点经纬度

  • 出入口信息列表

name

入口名称

location

入口经纬度

  • 火车换乘信息列表

名称

说明

id

线路 id 编号

time

该线路车段耗时

name

线路名称

trip

线路车次号

distance

该 item 换乘段的行车总距离

type

线路车次类型

departure_stop

火车始发站信息

id

上车站点 ID

name

上车站点名称

location

上车站点经纬度

adcode

上车站点所在城市的 adcode

time

上车点发车时间

start

是否始发站,1表示为始发站,0表示非始发站

arrival_stop

火车到站信息

id

下车站点 ID

name

下车站点名称

location

下车站点经纬度

adcode

下车站点所在城市的 adcode

time

到站时间,如大于24:00,则表示跨天

end

是否为终点站,1表示为终点站,0表示非终点站

via_stop

途径站点信息,extensions=all 时返回

name

途径站点的名称

id

途径站点的 ID

location

途径站点的坐标点

time

途径站点的进站时间,如大于24:00,则表示跨天

wait

途径站点的停靠时间,单位:分钟

alters

聚合的备选方案,extensions=all 时返回

id

备选方案 ID

name

备选线路名称

spaces

仓位及价格信息

code

仓位编码

cost

仓位费用

线路类型代码

公共交通工具备注

线路类型代码

公共交通工具备注

2010

普客火车

2015

T字头的特快火车

2011

G字头的高铁火车

2016

K字头的快车火车

2012

D字头的动车火车

2017

L字头,Y字头的临时火车

2013

C字头的城际火车

2018

S字头的郊区线火车

2014

Z字头的直达特快火车

仓位级别

仓位备注

仓位级别

仓位备注

0

不分仓位级别

20

火车高级软卧下铺

9

特等座

21

火车商务座

10

火车硬座

22

长途汽车座席

11

火车软座

23

长途汽车卧席上铺

12

火车软座1等座

24

长途汽车卧席中铺

13

火车软座2等座

25

长途汽车卧席下铺

14

火车硬卧上铺

30

飞机经济舱

15

火车硬卧中铺

31

飞机商务舱

16

火车硬卧下铺

40

客轮经济舱

17

火车软卧上铺

41

客轮3等舱

18

火车软卧下铺

42

客轮2等舱

19

火车高级软卧上铺

43

客轮豪华舱

驾车路径规划

驾车路径规划 API 可以规划以小客车、轿车通勤出行的方案,并且返回通勤方案的数据。

驾车路径规划 API URL:

URL

请求方式

https://restapi.amap.com/v3/direction/driving?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名称

含义

规则说明

是否必须

缺省值

key

用户唯一标识

用户在高德地图官网申请

origin

出发点

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。格式为x1,y1|x2,y2|x3,y3。

由于在实际使用过程中,存在定位飘点的情况。为了解决此类问题,允许传入多个起点用于计算车头角度。

最多允许传入3个坐标对,每对坐标之间距离必须超过2m。 虽然对每对坐标之间长度没有上限,但是如果超过4米会有概率性出现不准确的情况。使用三个点来判断距离和角度的有效性,如果两者都有效,使用第一个点和最后一个点计算的角度设置抓路的角度,规划路径时以最后一个坐标对进行规划。

destination

目的地

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

originid

出发点 poiid

起点为 POI 时,建议填充此值,可提升路线规划准确性

destinationid

目的地 poiid

当终点为 POI 时,建议填充此值

destinationtype

终点的 poi 类别

当用户知道终点 POI 的类别时候,建议填充此值

strategy

驾车选择策略

下方10~20的策略,会返回多条路径规划结果。(高德地图 APP 策略也包含在内,强烈建议从此策略之中选择)

下方策略 0~9的策略,仅会返回一条路径规划结果。

下方策略返回多条路径规划结果

10,返回结果会躲避拥堵,路程较短,尽量缩短时间,与高德地图的默认策略也就是不进行任何勾选一致

11,返回三个结果包含:时间最短;距离最短;躲避拥堵 (由于有更优秀的算法,建议用10代替)

12,返回的结果考虑路况,尽量躲避拥堵而规划路径,与高德地图的“躲避拥堵”策略一致

13,返回的结果不走高速,与高德地图“不走高速”策略一致

14,返回的结果尽可能规划收费较低甚至免费的路径,与高德地图“避免收费”策略一致

15,返回的结果考虑路况,尽量躲避拥堵而规划路径,并且不走高速,与高德地图的“躲避拥堵&不走高速”策略一致

16,返回的结果尽量不走高速,并且尽量规划收费较低甚至免费的路径结果,与高德地图的“避免收费&不走高速”策略一致

17,返回路径规划结果会尽量的躲避拥堵,并且规划收费较低甚至免费的路径结果,与高德地图的“躲避拥堵&避免收费”策略一致

18,返回的结果尽量躲避拥堵,规划收费较低甚至免费的路径结果,并且尽量不走高速路,与高德地图的“避免拥堵&避免收费&不走高速”策略一致

19,返回的结果会优先选择高速路,与高德地图的“高速优先”策略一致

20,返回的结果会优先考虑高速路,并且会考虑路况躲避拥堵,与高德地图的“躲避拥堵&高速优先”策略一致

下方策略仅返回一条路径规划结果

0,速度优先,此路线不一定距离最短

1,费用优先,不走收费路段,且耗时最少的路线

2,常规最快,综合距离/耗时规划结果

3,速度优先,不走快速路,例如京通快速路(因为策略迭代,建议使用13)

4,躲避拥堵,但是可能会存在绕路的情况,耗时可能较长

5,多策略(同时使用速度优先、费用优先、距离优先三个策略计算路径)。

其中必须说明,就算使用三个策略算路,会根据路况不固定的返回一~三条路径规划信息。

6,速度优先,不走高速,但是不排除走其余收费路段

7,费用优先,不走高速且避免所有收费路段

8,躲避拥堵和收费,可能存在走高速的情况,并且考虑路况不走拥堵路线,但有可能存在绕路和时间较长

9,躲避拥堵和收费,不走高速

0

waypoints

途经点

经度和纬度用","分割,经度在前,纬度在后,小数点后不超过6位,坐标点之间用";"分隔

最大数目:16个坐标点。如果输入多个途径点,则按照用户输入的顺序进行路径规划

avoidpolygons

避让区域

区域避让,支持32个避让区域,每个区域最多可有16个顶点

经度和纬度用","分割,经度在前,纬度在后,小数点后不超过6位,坐标点之间用";"分隔,区域之间用"|"分隔。如果是四边形则有四个坐标点,如果是五边形则有五个坐标点;

避让区域不能超过81平方公里,否则避让区域会失效。

province

用汉字填入车牌省份缩写,用于判断是否限行

例如:京

number

填入除省份及标点之外,车牌的字母和数字(需大写)。用于判断限行相关。

例如:NH1N11

支持6位传统车牌和7位新能源车牌

cartype

车辆类型

0:普通汽车(默认值) - -1:纯电动车 - -2:插电混动车

0

ferry 

在路径规划中,是否使用轮渡

0:使用渡轮(默认)  - -1:不使用渡轮 

0

roadaggregation

是否返回路径聚合信息

false:不返回路径聚合信息

true:返回路径聚合信息,在 steps 上层增加 roads 做聚合

false

nosteps

是否返回 steps 字段内容

当取值为0时,steps 字段内容正常返回;

当取值为1时,steps 字段内容为空;

0

sig

数字签名

请参考 数字签名获取和使用方法,数字签名认证用户必填

output

返回数据格式类型

可选值:JSON,XML

JSON

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

extensions

返回结果控制

可选值:base/all

base:返回基本信息;all:返回全部信息

base

服务示例

https://restapi.amap.com/v3/direction/driving?origin=116.481028,39.989643&destination=116.465302,40.004717&extensions=all&output=xml&key=<用户的key>
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参数

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备注

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必选

-
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origin

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lon,lat(经度,纬度),如117.500244, 40.417801 经纬度小数点不超过6位

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destination

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- lon,lat(经度,纬度),如117.500244, 40.417801 经纬度小数点不超过6位 -

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extensions

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- - base:返回基本信息;all:返回全部信息 - -

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strategy

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- 参见上方 strategy 的说明 -

-
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waypoints

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- 途经点,最大数目:16个坐标点 -

-
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avoidpolygons

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- 避让区域,如果是四边形则有四个坐标点,如果是五边形则有五个坐标点 -

-
-

-
-

返回结果参数说明

驾车规划的响应结果的格式由请求参数output指定。

名称

含义

规则说明

status

结果状态值,值为0或1

0:请求失败;1:请求成功

info

返回状态说明

status 为0时,info 返回错误原因,否则返回“OK”。详情参阅 info 状态表

count

驾车路径规划方案数目

route

驾车路径规划信息列表

 

origin

起点坐标

规则: lon,lat(经度,纬度), “,”分割,如117.500244, 40.417801 经纬度小数点不超过6位

destination

终点坐标

规则: lon,lat(经度,纬度), “,”分割,如117.500244, 40.417801 经纬度小数点不超过6位

taxi_cost

打车费用

单位:元,注意:extensions=all 时才会返回

paths

驾车换乘方案

 

path

驾车换乘方案

distance

行驶距离

单位:米

duration

预计行驶时间

单位:秒

strategy

导航策略

tolls

此导航方案道路收费

单位:元

restriction

限行结果

0 代表限行已规避或未限行,即该路线没有限行路段

1 代表限行无法规避,即该线路有限行路段

traffic_lights

红绿灯个数

toll_distance

收费路段距离

steps

导航路段

 

step

导航路段

详情见 导航路段信息 step 列表

  • 导航路段信息step列表

名称

含义

规则说明

instruction

行驶指示

orientation

方向

road

道路名称

distance

此路段距离

单位:米

tolls

此段收费

单位:元

toll_distance

收费路段距离

单位:米

toll_road

主要收费道路

polyline

此路段坐标点串

格式为坐标串,如:116.481247,39.990704;116.481270,39.990726

action

导航主要动作

详见 驾车动作列表

assistant_action

导航辅助动作

详见 驾车动作列表

tmcs

驾车导航详细信息

其中包含 tmc 对象

distance

此段路的长度

单位:米

status

此段路的交通情况

未知、畅通、缓行、拥堵、严重拥堵

polyline

此段路的轨迹

规格:x1,y1;x2,y2

cities

路线途经行政区划

name

名称

citycode

途径城市编码

adcode

途径区域编码

districts

name

途径区县名称

adcode

途径区县 adcode

  • 驾车动作列表

注意:extensions=all 时以下信息才会返回

主要动作列表

无基本导航动作

左转

右转

向左前方行驶

向右前方行驶

向左后方行驶

向右后方行驶

左转调头

直行

靠左

靠右

进入环岛

离开环岛

减速行驶

辅助动作列表

无辅助导航动作

进入主路

进入辅路

进入高速

进入匝道

进入隧道

进入中间岔道

进入右岔路

进入左岔路

进入右转专用道

进入左转专用道

进入中间道路

进入右侧道路

进入左侧道路

靠右行驶进入辅路

靠左行驶进入辅路

靠右行驶进入主路

靠左行驶进入主路

靠右行驶进入右转专用道

进入轮渡

驶离轮渡

沿当前道路行驶

沿辅路行驶

沿主路行驶

到达出口

到达服务区

到达收费站

到达途经地

到达目的地的

绕环岛左转

绕环岛右转

绕环岛直行

绕环岛调头

小环岛不数出口

到达复杂路口,走右边第一出口

到达复杂路口,走右边第二出口

到达复杂路口,走右边第三出口

到达复杂路口,走右边第四出口

到达复杂路口,走右边第五出口

到达复杂路口,走左边第一出口

到达复杂路口,走左边第二出口

到达复杂路口,走左边第三出口

到达复杂路口,走左边第四出口

到达复杂路口,走左边第五出口

进入调头专用路

骑行路径规划

骑行路径规划用于规划骑行通勤方案,规划时会考虑天桥、单行线、封路等情况。最大支持 500km 的骑行路线规划。

骑行路径规划 API URL:

URL

请求方式

https://restapi.amap.com/v4/direction/bicycling?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必填

缺省值

key

 请求服务权限标识 

 用户在高德地图官网 申请 Web 服务 API 类型 KEY 

origin

出发点经纬度

填入规则:X,Y,采用","分隔,例如“ 117.500244, 40.417801 ”

小数点后不得超过6位

destination

目的地经纬度

填入规则:X,Y,采用","分隔,例如“ 117.500244, 40.417801 ”

小数点后不得超过6位

返回结果参数说明 

名称

类型

含义

规则说明

data

对象

里面包含具体内容

业务数据字段

origin

String

起点坐标

格式:X,Y

destination

String 

终点坐标

格式:X,Y 

paths

数组

骑行方案列表信息

distance

数值

起终点的骑行距离

单位:米

duration

数值 

起终点的骑行时间

单位:秒

steps

数组

具体骑行结果

instruction 

String

路段骑行指示

例如:“骑行54米右转” 

road

String

 此段路道路名称

有可能出现空,需要特别指出,日后会用null表示

例如:“建国门北大街”

distance

数值

此段路骑行距离

orientation

String

此段路骑行方向

例如:“南”

duration

数值

此段路骑行耗时

单位:秒

polyline

String

此段路骑行的坐标点

格式:X,Y;X1,Y1;X2,Y2

action

String

此段路骑行主要动作

内容为中文指示。

骑行·主要动作,可能为空,也可能

为左转、右转、向左前方行驶、向右前方行驶等  

assistant_action

String

此段路骑行辅助动作

内容为中文提示。

例如:“到达目的地”

errcode

数值

返回结果码

0,表示成功

errdetail

String 

具体错误原因

此字段会详细说明错误原因

errmsg

String 

返回状态说明

OK代表成功

服务示例

https://restapi.amap.com/v4/direction/bicycling?origin=116.434307,39.90909&destination=116.434307,39.90909&key=<用户的key>
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参数

-
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备注

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必选

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origin

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起点经纬度

-
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destination

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- 终点经纬度 -

-
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-
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距离测量

距离测量 API URL:

URL

请求方式

https://restapi.amap.com/v3/distance?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

origins

出发点

支持100个坐标对,坐标对用“| ”分隔;经度和纬度用","分隔

必填

destination

目的地

规则: lon,lat(经度,纬度), “,”分割

如117.500244, 40.417801     经纬度小数点不超过6位

必填

type

路径计算的方式和方法

0:直线距离

1:驾车导航距离(仅支持国内坐标)。

必须指出,当为1时会考虑路况,故在不同时间请求返回结果可能不同。

此策略和驾车路径规划接口的 strategy=4策略基本一致,策略为“ 躲避拥堵的路线,但是可能会存在绕路的情况,耗时可能较长 ”

若需要实现高德地图客户端效果,可以考虑使用驾车路径规划接口

3:步行规划距离(仅支持5km之间的距离)

可选

1

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回数据格式类型

可选值:JSON,XML

可选

JSON

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

可选

服务示例

https://restapi.amap.com/v3/distance?origins=116.481028,39.989643|114.481028,39.989643|115.481028,39.989643&destination=114.465302,40.004717&output=xml&key=<用户的key>
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参数

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必选

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origins

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出发点
-支持100个坐标对,坐标对用“| ”分隔;经度和纬度用","分隔

-
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-
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destination

-
-
-
-
-
-
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- 目的地
-规则: lon,lat(经度,纬度), “,”分割
-如117.500244, 40.417801 经纬度小数点不超过6位
-

-
-

-
-

type

-
-
-
-
-
-
-

- - 此参数需要输入路径计算的方式和方法 - -

-
-

-
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返回结果参数说明

名称

说明

status

返回结果状态值,值为0或1,0表示请求失败;1表示请求成功

info

返回状态说明,status 为0时,info 返回错误原因;否则返回“OK”。详情参阅 info 状态表

results

距离信息列表

result

距离信息

origin_id

起点坐标,起点坐标序列号(从1开始)

dest_id

终点坐标,终点坐标序列号(从1开始) 

distance

路径距离,单位:米 

duration

预计行驶时间,单位:秒 

info

仅在出错的时候显示该字段。大部分显示“未知错误”

由于此接口支持批量请求,建议不论批量与否用此字段判断请求是否成功

code

仅在出错的时候显示此字段。

在驾车模式下:

1,指定地点之间没有可以行车的道路

2,起点/终点 距离所有道路均距离过远(例如在海洋/矿业)

3,起点/终点不在中国境内

-
diff --git a/.setup/plugins/amap/district.html b/.setup/plugins/amap/district.html deleted file mode 100644 index 00f1b777..00000000 --- a/.setup/plugins/amap/district.html +++ /dev/null @@ -1,244 +0,0 @@ -
-

- 行政区域查询 - 最后更新时间: 2024年10月24日 -

-

产品介绍

行政区域查询是一类简单的 HTTP 接口,根据用户输入的搜索条件可以帮助用户快速的查找特定的行政区域信息。

例如:中国>山东省>济南市>历下区>舜华路街道(国>省>市>区>街道)。

使用前,特别说明:
  • 目前部分城市和省直辖县因为没有区县的概念,故在市级下方直接显示街道。例如:广东-东莞、海南-文昌市。
  • 街道级别是不能返回边界数据 polyline 的,乡镇街道级别返回的 adcode 是所属区县的 adcode。
  • 暂时不支持台湾省的详细区划查询。

适用场景

用户希望通过得到行政区域信息,进行开发工作。

使用限制

服务调用量的限制请点击 这里 查阅。

使用说明

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1
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第一步
-
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- 申请 - 【Web服务API】密钥(Key) -
-
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2
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第二步
-
-
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- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
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3
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第三步
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- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
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- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

行政区域查询

行政区域查询 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/config/district?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

keywords

查询关键字

规则:只支持单个关键词语搜索关键词支持:行政区名称、citycode、adcode

例如,在 subdistrict=2,搜索省份(例如山东),能够显示市(例如济南),区(例如历下区)

adcode 信息可参考 城市编码表 获取

可选

subdistrict

子级行政区

规则:设置显示下级行政区级数(行政区级别包括:国家、省/直辖市、市、区/县、乡镇/街道多级数据)

可选值:0、1、2、3等数字,并以此类推

0:不返回下级行政区;

1:返回下一级行政区;

2:返回下两级行政区;

3:返回下三级行政区;

需要在此特殊说明,目前部分城市和省直辖县因为没有区县的概念,故在市级下方直接显示街道。

例如:广东-东莞、海南-文昌市

可选

1

page

需要第几页数据

最外层的 districts 最多会返回20个数据,若超过限制,请用 page 请求下一页数据。

例如:page=2;page=3。默认:page=1

可选

1

offset

最外层返回数据个数

可选

20

extensions

返回结果控制

此项控制行政区信息中返回行政区边界坐标点; 可选值:base、all;

base:不返回行政区边界坐标点;

all:只返回当前查询 district 的边界值,不返回子节点的边界值;

目前不能返回乡镇/街道级别的边界值

可选

base

filter

根据区划过滤

按照指定行政区划进行过滤,填入后则只返回该省/直辖市信息

需填入 adcode,为了保证数据的正确,强烈建议填入此参数

可选

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

可选

output

返回数据格式类型

可选值:JSON,XML

可选

JSON

返回结果参数说明

行政区域查询的响应结果的格式由请求参数output指定。

名称

含义

规则说明

status

返回结果状态值

值为0或1,0表示失败;1表示成功

info

返回状态说明

返回状态说明,status 为0时,info 返回错误原因,否则返回“OK”。

infocode

状态码

返回状态说明,10000代表正确,详情参阅 info 状态表

suggestion

建议结果列表

keywords

建议关键字列表

 cities

建议城市列表

districts

行政区列表

district

行政区信息

citycode

城市编码

adcode

区域编码

街道没有独有的 adcode,均继承父类(区县)的 adcode

name

行政区名称

polyline

行政区边界坐标点

当一个行政区范围,由完全分隔两块或者多块的地块组

成,每块地的 polyline 坐标串以 | 分隔 。

如北京 的 朝阳区

center

区域中心点

乡镇级别返回的center是边界线上的形点,其他行政级别返回的center不一定是中心点,若政府机构位于面内,则返回政府坐标,政府不在面内,则返回繁华点坐标。

level

行政区划级别

country:国家

province:省份(直辖市会在province显示)

city:市(直辖市会在province显示)

district:区县

street:街道

districts

下级行政区列表,包含 district 元素

服务示例

https://restapi.amap.com/v3/config/district?keywords=北京&subdistrict=2&key=<用户的key>
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参数

-
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备注

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必选

-
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keywords

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-
-

规则:只支持单个关键词语搜索关键词支持:行政区名称、citycode、adcode
- -例如,在 subdistrict=2,搜索省份(例如山东),能够显示市(例如济南),区(例如历下区)

-
-

-
-

subdistrict

-
-
-
- -
-
-
-

- - 规则:设置显示下级行政区级数(行政区级别包括:国家、省/直辖市、市、区/县4个级别)
- 可选值:0、1、2、3
- 0:不返回下级行政区;
- 1:返回下一级行政区;
- 2:返回下两级行政区;
- 3:返回下三级行政区;
-
-

-
-

-
-

extensions

-
-
-
- -
-
-
-

- - 此项控制行政区信息中返回行政区边界坐标点; 可选值:base、all;
- base:不返回行政区边界坐标点;
- all:只返回当前查询 district 的边界值,不返回子节点的边界值;
-
-

-
-

-
-
-
diff --git a/.setup/plugins/amap/georegeo.html b/.setup/plugins/amap/georegeo.html deleted file mode 100644 index 13d03051..00000000 --- a/.setup/plugins/amap/georegeo.html +++ /dev/null @@ -1,322 +0,0 @@ -
-

- 地理/逆地理编码 - 最后更新时间: 2026年02月02日 -

-

产品介绍

地理编码/逆地理编码 API 是通过 HTTP/HTTPS 协议访问远程服务的接口,提供结构化地址与经纬度之间的相互转化的能力。

结构化地址的定义:

首先,地址肯定是一串字符,内含国家、省份、城市、区县、城镇、乡村、街道、门牌号码、屋邨、大厦等建筑物名称。按照由大区域名称到小区域名称组合在一起的字符。一个有效的地址应该是独一无二的。注意:针对大陆、港、澳地区的地理编码转换时可以将国家信息选择性的忽略,但省、市、城镇等级别的地址构成是不能忽略的。暂时不支持返回台湾省的详细地址信息。

适用场景 

使用限制

详细的服务调用量限制可 点我查阅

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

地理编码

地理编码 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/geocode/geo?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填

address

结构化地址信息

规则遵循:国家、省份、城市、区县、城镇、乡村、街道、门牌号码、屋邨、大厦,如:北京市朝阳区阜通东大街6号。

必填

city

指定查询的城市

可选输入内容包括:指定城市的中文(如北京)、指定城市的中文全拼(beijing)、citycode(010)、adcode(110000),不支持县级市。当指定城市查询内容为空时,会进行全国范围内的地址转换检索。

adcode 信息可参考 城市编码表 获取

可选

无,会进行全国范围内搜索

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回数据格式类型

可选输入内容包括:JSON,XML。设置 JSON 返回结果数据将会以 JSON 结构构成;如果设置 XML 返回结果数据将以 XML 结构构成。

可选

JSON

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

返回结果参数说明

响应结果的格式可以通过请求参数 output 指定,默认为 JSON 形式。

以下是返回参数说明:

名称

含义

规则说明

status

返回结果状态值

返回值为 0 或 1,0 表示请求失败;1 表示请求成功。

count

返回结果数目

返回结果的个数。

info

返回状态说明

当 status 为 0 时,info 会返回具体错误原因,否则返回“OK”。详情可以参阅 info 状态表

geocodes

地理编码信息列表

结果对象列表,包括下述字段:

country

国家

国内地址默认返回中国

province

地址所在的省份名

例如:北京市。此处需要注意的是,中国的四大直辖市也算作省级单位。

city

地址所在的城市名

例如:北京市

citycode

城市编码

例如:010

district

地址所在的区

例如:朝阳区

street

街道

例如:阜通东大街

number

门牌

例如:6号

adcode

区域编码

例如:110101

location

坐标点

经度,纬度

level

匹配级别

参见下方的地理编码匹配级别列表

提示

部分返回值当返回值存在时,将以字符串类型返回;当返回值不存在时,则以数组类型返回。

服务示例

https://restapi.amap.com/v3/geocode/geo?address=北京市朝阳区阜通东大街6号&output=XML&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

address

-
-
-
-
-
-
-

填写结构化地址信息:省份+城市+区县+城镇+乡村+街道+门牌号码

-
-

-
-

city

-
-
-
-
-
-
-

查询城市,可选:城市中文、中文全拼、citycode、adcode

-
-

-
-
示例说明

address 是需要获取坐标的结构化地址,output(XML)用于指定返回数据的格式,Key 是用户请求数据的身份标识,详细可以参考上方的请求参数说明。

逆地理编码

逆地理编码 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/geocode/regeo?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填

location

经纬度坐标

传入内容规则:经度在前,纬度在后,经纬度间以“,”分割,经纬度小数点后不要超过 6 位。

必填

poitype

返回附近 POI 类型

以下内容需要 extensions 参数为 all 时才生效。

逆地理编码在进行坐标解析之后不仅可以返回地址描述,也可以返回经纬度附近符合限定要求的 POI 内容(在 extensions 字段值为 all 时才会返回 POI 内容)。设置 POI 类型参数相当于为上述操作限定要求。参数仅支持传入 POI TYPECODE,可以传入多个 POI TYPECODE,相互之间用“|”分隔。获取 POI TYPECODE 可以参考 POI 分类码表

可选

radius

搜索半径

radius 取值范围:0~3000,默认值:1000。单位:米

可选

1000

extensions

返回结果控制

extensions 参数默认取值是 base,也就是返回基本地址信息;

extensions 参数取值为 all 时会返回基本地址信息、附近 POI 内容、道路信息以及道路交叉口信息。

可选

base

roadlevel

道路等级

以下内容需要 extensions 参数为 all 时才生效。

可选值:0,1  -当 roadlevel=0时,显示所有道路 ; -当 roadlevel=1时,过滤非主干道路,仅输出主干道路数据 

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回数据格式类型

可选输入内容包括:JSON,XML。设置 JSON 返回结果数据将会以 JSON 结构构成;如果设置 XML 返回结果数据将以 XML 结构构成。

可选

JSON

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

homeorcorp

是否优化 POI 返回顺序

以下内容需要 extensions 参数为 all 时才生效。

homeorcorp 参数的设置可以影响召回 POI 内容的排序策略,目前提供三个可选参数:

0:不对召回的排序策略进行干扰。

1:综合大数据分析将居家相关的 POI 内容优先返回,即优化返回结果中 pois 字段的poi 顺序。

2:综合大数据分析将公司相关的 POI 内容优先返回,即优化返回结果中 pois 字段的poi 顺序。

可选

0

返回结果参数说明

逆地理编码的响应结果的格式由请求参数 output 指定。

名称

含义

规则说明

status

返回结果状态值

返回值为 0 或 1,0 表示请求失败;1 表示请求成功。

info

返回状态说明

当 status 为 0 时,info 会返回具体错误原因,否则返回“OK”。详情可以参考 info 状态表

regeocode

逆地理编码列表

返回 regeocode 对象;regeocode 对象包含的数据如下:

addressComponent

地址元素列表

country

坐标点所在国家名称

例如:中国

 

province

 坐标点所在省名称 

 例如:北京市 

city

坐标点所在城市名称

请注意:当城市是省直辖县时返回为空,以及城市为北京、上海、天津、重庆四个直辖市时,该字段返回为空;省直辖县列表

citycode

城市编码

例如:010

district

坐标点所在区

例如:海淀区

adcode

行政区编码

例如:110108

township

坐标点所在乡镇/街道(此街道为社区街道,不是道路信息)

例如:燕园街道

towncode

乡镇街道编码

例如:110101001000

neighborhood

社区信息列表

name

社区名称

例如:北京大学

type

POI 类型

例如:科教文化服务;学校;高等院校

building

楼信息列表

name

建筑名称

例如:万达广场

type

类型

例如:科教文化服务;学校;高等院校

streetNumber

门牌信息列表

street

街道名称

例如:中关村北二条

number

门牌号

例如:3号

location

坐标点

经纬度坐标点:经度,纬度

direction

方向

坐标点所处街道方位

distance

门牌地址到请求坐标的距离

单位:米

seaArea

所属海域信息

例如:渤海

businessAreas

经纬度所属商圈列表

businessArea

商圈信息

location

商圈中心点经纬度

name

 商圈名称 

 例如:颐和园 

id

 商圈所在区域的 adcode 

 例如:朝阳区/海淀区 

roads

道路信息列表

请求参数 extensions 为 all 时返回如下内容

road

道路信息

id

道路 id

name

道路名称

distance

道路到请求坐标的距离

单位:米

direction

方位

输入点和此路的相对方位

location

坐标点

roadinters

道路交叉口列表

请求参数 extensions 为 all 时返回如下内容

roadinter

道路交叉口

distance

交叉路口到请求坐标的距离

单位:米

direction

方位

输入点相对路口的方位

location

路口经纬度

first_id

第一条道路 id

first_name

第一条道路名称

second_id

第二条道路 id

second_name

第二条道路名称

pois

poi 信息列表

请求参数 extensions 为 all 时返回如下内容

poi

poi 信息列表

id

poi 的 id

name

poi 点名称

type

poi 类型

tel

电话

distance

该 POI 的中心点到请求坐标的距离

单位:米

direction

方向

相对于输入点的方位

address

poi 地址信息

location

坐标点

businessarea

poi 所在商圈名称

aois

aoi 信息列表

请求参数 extensions 为 all 时返回如下内容

aoi

aoi 信息

id

所属 aoi 的 id

name

所属 aoi 名称

adcode

所属 aoi 所在区域编码

location

所属 aoi 中心点坐标

area

所属 aoi 点面积

单位:平方米

distance

输入经纬度是否在 aoi 面之中

 0,代表在 aoi 内

其余整数代表距离 AOI 的距离

type

所属 aoi 类型

提示

部分返回值当返回值存在时,将以字符串类型返回;当返回值不存在时,则以数组类型返回。

服务示例

https://restapi.amap.com/v3/geocode/regeo?output=xml&location=116.310003,39.991957&key=<用户的key>&radius=1000&extensions=all 
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

location

-
-
-
-
-
-
-

经纬度坐标

-
-

-
-

poitype

-
-
-
-
-
-
-

支持传入 POI TYPECODE 及名称;支持传入多个 POI 类型,多值间用“|”分隔

-
-

-
-

radius

-
-
-
-
-
-
-

查询 POI 的半径范围。取值范围:0~3000,单位:米

-
-

-
-

extensions

-
-
-
- -
-
-
-

- - 返回结果控制 - -

-
-

-
-

roadlevel

-
-
-
-
-
-
-

可选值:1,当 roadlevel=1时,过滤非主干道路,仅输出主干道路数据

-
-

-
-
说明

location(116.310003,39.991957) 是所需要转换的坐标点经纬度,radius(1000)为返回的附近 POI 的范围,单位:米,extensions(all)为返回的数据内容,output(XML)用于指定返回数据的格式,Key 是高德 Web 服务 Key。详细可以参考上方的请求参数说明。

地理编码匹配级别列表

匹配级别

示例

国家

中国

河北省、北京市

 宁波市  

区县

北京市朝阳区

 开发区  

 亦庄经济开发区  

 乡镇  

 回龙观镇  

 村庄  

 三元村  

 热点商圈  

 上海市黄浦区老西门  

 道路  

 北京市朝阳区阜通东大街  

 道路交叉路口  

 北四环西路辅路/善缘街  

 兴趣点  

 北京市朝阳区奥林匹克公园(南门)  

 门牌号  

 朝阳区阜通东大街6号  

 单元号  

 望京西园四区5号楼2单元  

 楼层  

 保留字段,建议兼容

 房间  

 保留字段,建议兼容

 公交地铁站点  

 海淀黄庄站 A1西北口  

 门址  (新增)

 北京市朝阳区阜荣街10号  

 小巷(新增)  

 保留字段,建议兼容

 住宅区(新增)  

 广西壮族自治区柳州市鱼峰区德润路华润凯旋门  

 未知  

 未确认级别的 POI  

-
diff --git a/.setup/plugins/amap/grasproad.html b/.setup/plugins/amap/grasproad.html deleted file mode 100644 index 6af43a93..00000000 --- a/.setup/plugins/amap/grasproad.html +++ /dev/null @@ -1,122 +0,0 @@ -
-

- 轨迹纠偏 - 最后更新时间: 2024年08月06日 -

-

产品介绍

根据坐标点抓取道路,即根据给定的坐标点、车辆的方位角以及行驶速度,将用户的轨迹纠偏到路上,从而返回用户实际驾车经过的道路坐标。

注意

适用场景

用于将行车产生的轨迹坐标点匹配到道路上。

使用限制

服务调用量的限制请点击 这里 查阅。  

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 此服务为POST请求方式,请务必参阅1.1以及1.2之中的要求,并严格按照要求实现 -
-
-
-
-
3
-
第三步
-
-
- 接收HTTP请求返回的数据(JSON格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

注意

纠偏效果取决于轨迹中定位点的密集程度,定位点间隔效果最优理论值5~10秒,也就是每5秒或者10秒一个定位点构成的轨迹纠偏效果最优。

轨迹纠偏

轨迹纠偏API服务地址

URL

请求方式

https://restapi.amap.com/v4/grasproad/driving 

POST

请求参数

1.1通用参数

提示

1.1之中参数需要置于 queryString 之中

 参数名称 

 含义 

 规则说明 

 是否必填

 默认值 

 key 

 客户唯一标示 

 用户申请,由高德后台自动分配 

 是 

 无 

1.2业务参数

提示

1.2之中参数需要置于 body 体之中

Post 数据格式为 JsonArray,里面需要包含 JsonObject

x、y、ag、tm、sp 此为一个 JsonObject,每个 JsonObject 需要保持完整,最多有500个 JsonObject

 参数名称  

 含义  

  规则说明  

 是否必填 

  默认值  

x

经度 

小数点后最多6位 

是 

 无   

y

纬度

小数点后最多6位 

是 

 无   

ag

角度 

与正北方向的夹角,小数、整数均可

需要注意的是,计算时需要参考到设备的角度来判别方向,如果ag参数是0,或者是不合法的参数,会比较大概率导致纠偏计算失败。

是 

 无   

tm

时间 

tm 以秒为单位,第一个采集点的 tm 值从1970年0点开始,其他采集点为与第一个采集点时间的差值

是 

 无   

sp

速度 

车辆/设备的移动速度,单位:km/h ,小数、整数均可,在计算纠偏时如果速度值不合理,会比较大概率导致纠偏计算失败。在使用时请传入合理的速度值。

是 

 无   

请求示例

body之中的样例

[{"x":116.478928,"y":39.997761,"sp":19,"ag":0,"tm":1478031031},{"x":116.478907,"y":39.998422,"sp":10,"ag":0,"tm":2},{"x":116.479384,"y":39.998546,"sp":10,"ag":110,"tm":3},{"x":116.481053,"y":39.998204,"sp":10,"ag":120,"tm":4},{"x":116.481793,"y":39.997868,"sp":10,"ag":120,"tm":5},{"x":116.482898,"y":39.998217,"sp":10,"ag":30,"tm":6},{"x":116.483789,"y":39.999063,"sp":10,"ag":30,"tm":7},{"x":116.484674,"y":39.999844,"sp":10,"ag":30,"tm":8}]

返回结果参数说明

返回字段

含义

data

数据体

distance

总距离

points

返回坐标合集

x

经度

y

维度

errcode

30001错误表示抓路失败。当传入点数较少或较稀疏时,可能会导致抓路失败。

errdetail  

errmsg 

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diff --git a/.setup/plugins/amap/hardware-location.html b/.setup/plugins/amap/hardware-location.html deleted file mode 100644 index 29c02b27..00000000 --- a/.setup/plugins/amap/hardware-location.html +++ /dev/null @@ -1,148 +0,0 @@ -
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- 智能硬件定位 - 最后更新时间: 2025年11月05日 -

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产品介绍

智能硬件定位 API 使用 HTTP 协议访问远程服务的接口,支持通过服务端上传 WIFI 和基站信息来实现定位进而获取经纬度和其他位置信息。

适用场景

该服务仅适用于没有 Android 或 iOS 系统的智能硬件产品使用。如您的产品支持 Android 或 iOS 系统,建议使用 Android 定位 SDK 或 iOS 定位 SDK 以获得更精准效果和更丰富功能。

使用说明

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第一步
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- 申请 - 【Web服务API】密钥(Key) -
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第二步
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- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
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第三步
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- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
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- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
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成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

智能硬件定位

智能硬件定位 API 服务地址

URL

请求方式

https://apilocate.amap.com/position?parameters

GET

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parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key 

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填 

无 

accesstype 

移动端接入网络方式 

可选值: 

移动接入网络:0 

wifi 接入网络:1 

必填 

无 

imei 

手机 imei 号 

此参数能够提高定位精度和准确度,且定位不到时可依据此参数进行跟踪排查,如没有则无法排查和跟踪问题 

非必填,但建议填写 

无 

idfa 

ios 手机的 idfa 

此参数能够提高定位精度和准确度,且定位不到时可依据此参数进行跟踪排查,如没有则无法排查和跟踪问题 

与 imei 必填一个 

无 

smac 

手机 mac 码 

此参数能够提高定位精度和准确度,且定位不到时可依据此参数进行跟踪排查,如没有则无法排查和跟踪问题 

非必填,但建议填写 

无 

serverip 

设备接入基站时对应的网关 IP 

此参数能够提高定位精度和准确度,且定位不到时可依据此参数进行跟踪排查,如没有则无法排查和跟踪问题 

非必填,但建议填写 

无 

cdma 

是否为 cdma 

是否为 cdma:

非 cdma:0 

是 cdma:1  

accesstype=0

时,必填 

imsi 

移动用户识别码 

此参数能够提高定位精度和准确度,且定位不到时可依据此参数进行跟踪排查,如没有则无法排查和跟踪问题 

非必填,但建议填写 

无 

network 

无线网络类型 

GSM/GPRS/EDGE/HSUPA/HSDPA/WCDMA 

accesstype=0

时,必填 

 

tel 

手机号码 

 

非必填 

无 

bts 

接入基站信息 

接入基站信息,详见:表 1-2 内部参数说明 

非 CDMA 格式为:mcc,mnc,lac,cellid,signal 

CDMA 格式为:sid,nid,bid,lon,lat,signal

其中 lon,lat 可为空,格式为:sid,nid,bid,,,signal 

accesstype=0

时,必填 

无 

nearbts 

周边基站信息(不含接入基站信息) 

基站信息 1|基站信息 2|基站信息 3….. 

非必填 

无 

mmac 

已连热点 mac 信息 

mac,signal,ssid

如:

mac:f0:7d:68:9e:7d:18

signal:-41

ssid:TPLink 

非必填,但强烈建议填写 

无 

macs 

wifi 列表中 mac 信息 

单 mac 信息同 mmac,mac 之间使用“|” 分隔。必须填写 2 个及 2 个以上,30 个以内的方可正常定位。请不要包含移动 wifi 信息 

accesstype=1

时,必填 

无 

output 

返回数据格式类型 

可选值:JSON | XML 

可选 

JSON

参数名称 

参数含义 

是否必填 

mcc 

移动用户所属国家代码,默认值为 460 

cdma=0 时,必填 

mnc 

移动网号, 中国移动:0;中国联通:1 

cdma=0 时,必填 

lac 

位置区域码, 取值范围:0-65535 

cdma=0 时,必填 

cellid 

基站小区编号,取值范围:0-65535,0-268435455

其中 0/65535/268435455 取值不可使用

小区编号大于 65535 时为 3G 基站 

cdma=0 时,必填 

signal 

信号强度, 取值范围:0 到-113dbm. 

(如获得信号强度为正数,则请按照以下公式进行转换:获得的正信号强度 * 2 – 113) 

cdma=0 时,必填 

sid 

cdma 系统识别码 

cdma=1 时,必填 

nid 

cdma 网络识别码 

cdma=1 时,必填 

bid 

cdma 小区唯一识别码 

cdma=1 时,必填 

lon 

cdma 经度值, 手机平台接口读出的数值 

可选 

lat 

cdma 纬度值, 手机平台接口读出的数值 

可选 

mac 

mac 地址,例如:00:0f:e2:4e:aa:3e 

accesstype=1 时,必填 

ssid 

无线网络名称 

accesstype=1 时,必填 

特别说明

为了尽可能地保证您定位结果的精确性,在以上所有场景中,除了必须填写的参数外,其他可以获得的参数也请一并传入。 例如:wifi 接入网络的情况下,也可以传入其对应的基站信息;而在移动接入网络的情况下,也可传入 wifi 列表中 mac 信息(macs)。

返回结果参数说明

智能硬件查询的响应结果的格式由请求参数 output 指定。

名称

含义

规则说明

status

返回结果状态值

值为 0 或 1,0 表示失败;1 表示成功

info

返回状态说明

返回状态说明,status 为 0 时,info 返回错误原因,否则返回“OK”

result

定位结果列表

type

定位类型

0:没有得到定位结果;

其他数字为:正常获取定位结果

imei

手机 imei 号

location

定位经纬度

radius

定位精度半径,单位:米

desc

位置描述

country

国家

非必返回

province

省份

非必返回

city

城市

非必返回

citycode

城市编码

非必返回

adcode

区域编码

非必返回

road

道路名

非必返回

poi

定位附近的 poi 名称

非必返回

Info 返回值 

状态描述 

OK 

正常 

INVALID_USER_KEY 

用户 key 非法或过期 

SERVICE_NOT_EXIST 

请求服务不存在 

SERVICE_RESPONSE_ERROR 

请求服务响应错误 

INSUFFICIENT_PRIVILEGES 

无权限访问此服务 

OVER_QUOTA 

请求超出配额 

INVALID_PARAMS 

请求参数非法 

UNKNOWN_ERROR 

未知错误 

服务示例

根据接入网络方式,可以分为三种定位场景,以下对三种定位场景给出对应示例。 

https://apilocate.amap.com/position?accesstype=1&bts=460%2C0%2C29744%2C267330583%2C109&nearbts=460%2C0%2C29744%2C34467715%2C121&macs=0e%3A6f%3Ab0%3A6e%3Af1%3A1c%2C-63%2Ca|d8%3Ae8%3A44%3A5f%3A99%3A23%2C-64%2Ca|5a%3Abe%3A72%3A5a%3A6d%3A54%2C-64%2Ca|ba%3A60%3A61%3Abb%3Ade%3A93%2C-65%2Ca|da%3Ae8%3A44%3A1f%3A99%3A23%2C-65%2Ca|78%3A60%3A5b%3Ab2%3Ad7%3A06%2C-66%2Ca&cdma=0&imei=15030518977&output=json&platform=rest&key=<用户的key>
https://apilocate.amap.com/position?cdma=0&imsi=&accesstype=0&network=GPRS&bts=460%2C0%2C37335%2C545%2Cnull&platform=rest&key=<用户的key>

 

https://apilocate.amap.com/position?ccesstype=0&bts=460%2C11%2C14916%2C61465907%2C-58&output=JSON&macs=24%3A69%3A8E%3A4E%3AD1%3A78%2C-84%2Cwifi1|54%3AA7%3A03%3AA3%3A7D%3A60%2C-88%2Cwifi2|26%3A69%3A8E%3A4E%3AD1%3A78%2C-93%2Cwifi3&cdma=1&imei=864789054739647&network=WCDMA&key=<用户的key>&platform=rest

智能硬件定位 2.0

智能硬件定位 2.0 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/position/IoT?parameters

POST

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parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

​请求参数

参数名

含义

规则说明

是否必填

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 Key

diu

设备唯一编号

用于问题排查,建议填充 imei、IDFA 等唯一标识,未填则后续无法排查问题

accesstype

移动端接入网络方式

可选值:

0-未知

1-移动网络

2-wifi

cdma

手机卡是否为 CDMA 卡

可选值:非 cdma-0,cdma-1

accesstype=1时必填 

network

无线网络类型 

GSM/GPRS/EDGE/HSUPA/HSDPA/WCDMA/NR

GSM

bts

接入基站信息

非 CDMA 格式为:mcc,mnc,lac,cellid,signal,cage

CDMA 格式为:

sid,nid,bid,lon,lat,signal,cage

lon,lat 为空时,格式为:sid,nid,bid,,,signal,cage

基站新鲜度字段(cage)说明:单位为秒,表示信号不变持续的时间。新鲜度值越大(数据越陈旧),偏离实际位置可能越大。默认为 0。

nearbts

周边基站信息(不含接入基站) 

基站信息1|基站信息2|基站信息3….. 

historybts

历史基站信息

历史定位基站信息,用于辅助定位。格式与周边基站信息相同。

mmac

已连接 WiFi 信息

格式为:mac,signal,ssid,fresh

如:

mac:f0:7d:68:9e:7d:18

signal:-41

ssid:TPLink

fresh:0

WiFi 新鲜度字段(fresh)说明:单位为:秒,表示信号不变持续的时间。新鲜度值越大(数据越陈旧),偏离实际位置可能越大。默认为 0。

accesstype=2时必填 

macs

WiFi 列表中的 WiFi 信息

单 mac 信息同 mmac,mac 之间使用“|” 分隔。必须填写 2 个及 2 个以上,30 个以内的方可正常定位。请不要包含移动 wifi 信息 

show_fields

逆地理编码结果开关

特别说明

网络定位依赖 WiFi、基站信息作为输入。为了尽可能地保证您定位结果的精确性,在以上所有场景中,除了必须填写的参数外,其他可以获得的参数也请一并传入。例如:WiFi 接入网络时,也可以传入其对应的基站信息;移动接入网络时,也可以传入 WiFi 列表信息。 

返回参数

返回数据格式类型为 JSON

名称

类型

说明

status

String

本次 API 访问状态,如果成功返回 1,如果失败返回 0。

info

String

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

String

返回状态说明,10000 代表正确,详情参阅 info 状态表

position

Object

返回的定位结果列表

location

String

定位结果坐标,如:116.473168,39.993015

radius

int

定位精度半径,单位:米

注意以下字段如果需要返回,需要通过“show_fields”进行参数类设置。

show_fields

String

可选差异化结果返回

formatted_address

String

结构化地址信息

addressComponent

Object

地址元素列表

country

String

国家 (非必返回)

province

String

省份 (非必返回)

city

String

城市 (非必返回)

district

String

区 (非必返回)

citycode

String

城市编码 (非必返回)

adcode

String

区域编码 (非必返回)

street

String

附近街道名称 (非必返回)

road

String

周边道路名称 (非必返回)

poi

String

周边 POI 名称 (非必返回)

服务示例

根据接入网络方式,可以分为三种定位场景,以下对三种定位场景给出对应示例。

https://restapi.amap.com/v5/position/IoT?cdma=1&accesstype=0&key=<用户的key>&bts=0%2C0%2C0%2C%2C%2C0%2C0&csid&gsid=033102086038175426819116500031710119075&traceid&platform=rest&isNotAllPoi=false&macs=94%3A7f%3Ad8%3Add%3A5f%3A87%2C-41%2C%2C0%7C94%3A7f%3Ad8%3Add%3A5f%3A86%2C-47%2C%2C0%7Cf4%3A6a%3A92%3A6d%3A5a%3A6f%2C-68%2C%2C0%7C74%3A7d%3A24%3A7d%3A87%3A48%2C-70%2C%2C0%7C74%3A54%3A27%3A0b%3Ae2%3A78%2C-71%2C%2C0%7Cdc%3A15%3A2d%3Ae6%3A9d%3A7a%2C-74%2C%2C0%7Cf8%3Ab8%3Ab4%3Ad2%3A16%3Aa2%2C-75%2C%2C0%7C54%3A4d%3Ad4%3Ada%3Ae6%3A6b%2C-77%2C%2C0%7Cf4%3A6a%3A92%3A6d%3A5a%3A71%2C-77%2C%2C0%7C74%3A69%3A4a%3A28%3A62%3Aa3%2C-77%2C%2C0%7Cd0%3Add%3A7c%3A05%3A3d%3A30%2C-78%2C%2C0%7Cb8%3A3a%3A08%3A9d%3A89%3A11%2C-80%2C%2C0%7Cc8%3A3a%3A35%3A23%3A6b%3Ae8%2C-82%2C%2C0%7C2c%3A70%3A4f%3Ae7%3A65%3A34%2C-84%2C%2C0%7C62%3A09%3A47%3Aa8%3A97%3A5e%2C-84%2C%2C0%7Cdc%3Afe%3A18%3Adc%3A68%3A2f%2C-85%2C%2C0%7Cd0%3Add%3A7c%3A05%3A3d%3A31%2C-89%2C%2C0%7C&mmac=94%3A7f%3Ad8%3Add%3A5f%3A86%2C-47%2C%2C0
https://restapi.amap.com/v5/position/IoT?accesstype=1&bts=460,00,32947,252599745,-120,-1&output=json&macs=8c:5a:c1:6a:54:e1,-59,,-1|b0:30:55:8a:02:87,-60,CMCC-2fuY,-1|20:6b:e7:a2:b2:51,-60,TP-LINK_B251,-1|18:d9:8f:0c:13:40,-60,ZS,-1|9c:6f:52:8d:0d:10,-60,CMCC-3f3c,-1&cdma=0&diu=352315052834187&key=<用户的key>&network=GSM
https://restapi.amap.com/v5/position/IoT?mmac=60:3a:7c:b5:a6:82,58,1,0&accesstype=2&bts=460,00,32947,252599745,-120,-1&output=json&cdma=0&diu=352315052834187&key=您的key&network=GSM

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diff --git a/.setup/plugins/amap/info.html b/.setup/plugins/amap/info.html deleted file mode 100644 index 73973fa5..00000000 --- a/.setup/plugins/amap/info.html +++ /dev/null @@ -1,7 +0,0 @@ -
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- 错误码说明 - 最后更新时间: 2022年10月12日 -

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infocode

info返回值

状态描述

问题排查策略

10000

OK

请求正常

请求正常

10001

INVALID_USER_KEY

key不正确或过期

开发者发起请求时,传入的key不正确或者过期 

10002

SERVICE_NOT_AVAILABLE

没有权限使用相应的服务或者请求接口的路径拼写错误

1.开发者没有权限使用相应的服务,例如:开发者申请了WEB定位功能的key,却使用该key访问逆地理编码功能时,就会返回该错误。反之亦然。

2.开发者请求接口的路径拼写错误。例如:正确的https://restapi.amap.com/v3/ip在程序中被拼装写了https://restapi.amap.com/vv3/ip"

10003

DAILY_QUERY_OVER_LIMIT

访问已超出日访问量

开发者的日访问量超限,被系统自动封停,第二天0:00会自动解封。

10004

ACCESS_TOO_FREQUENT

单位时间内访问过于频繁

开发者的单位时间内(1分钟)访问量超限,被系统自动封停,下一分钟自动解封。

10005

INVALID_USER_IP

IP白名单出错,发送请求的服务器IP不在IP白名单内

开发者在LBS官网控制台设置的IP白名单不正确。白名单中未添加对应服务器的出口IP。可到"控制台>配置"  中设定IP白名单。

10006

INVALID_USER_DOMAIN

绑定域名无效

开发者绑定的域名无效,需要在官网控制台重新设置

10007

INVALID_USER_SIGNATURE

数字签名未通过验证

开发者签名未通过开发者在key控制台中,开启了“数字签名”功能,但没有按照指定算法生成“数字签名”。

10008

INVALID_USER_SCODE

MD5安全码未通过验证

需要开发者判定key绑定的SHA1,package是否与sdk包里的一致

10009

USERKEY_PLAT_NOMATCH

请求key与绑定平台不符

请求中使用的key与绑定平台不符,例如:开发者申请的是js api的key,却用来调web服务接口

10010

IP_QUERY_OVER_LIMIT

IP访问超限

未设定IP白名单的开发者使用key发起请求,从单个IP向服务器发送的请求次数超出限制,被系统自动封停。封停后无法自动恢复,需要提交工单联系我们。

10011

NOT_SUPPORT_HTTPS

服务不支持https请求

服务不支持https请求,如果需要申请支持,请提交工单联系我们

10012

INSUFFICIENT_PRIVILEGES

权限不足,服务请求被拒绝

由于不具备请求该服务的权限,所以服务被拒绝。

10013

USER_KEY_RECYCLED

Key被删除

开发者删除了key,key被删除后无法正常使用

10014

QPS_HAS_EXCEEDED_THE_LIMIT

云图服务QPS超限

QPS超出限制,超出部分的请求被拒绝。限流阈值内的请求依旧会正常返回

10015

GATEWAY_TIMEOUT

受单机QPS限流限制

受单机QPS限流限制时出现该问题,建议降低请求的QPS或在控制台提工单联系我们

10016

SERVER_IS_BUSY

服务器负载过高

服务器负载过高,请稍后再试

10017

RESOURCE_UNAVAILABLE

所请求的资源不可用

所请求的资源不可用

10019

CQPS_HAS_EXCEEDED_THE_LIMIT

使用的某个服务总QPS超限

QPS超出限制,超出部分的请求被拒绝。限流阈值内的请求依旧会正常返回

10020

CKQPS_HAS_EXCEEDED_THE_LIMIT

某个Key使用某个服务接口QPS超出限制

QPS超出限制,超出部分的请求被拒绝。限流阈值内的请求依旧会正常返回

10021

CUQPS_HAS_EXCEEDED_THE_LIMIT 

账号使用某个服务接口QPS超出限制

QPS超出限制,超出部分的请求被拒绝。限流阈值内的请求依旧会正常返回

10026

INVALID_REQUEST

账号处于被封禁状态

由于违规行为账号被封禁不可用,如有异议请登录控制台提交工单进行申诉

10029

ABROAD_DAILY_QUERY_OVER_LIMIT

某个Key的QPS超出限制

QPS超出限制,超出部分的请求被拒绝。限流阈值内的请求依旧会正常返回

10041

NO_EFFECTIVE_INTERFACE

请求的接口权限过期

开发者发起请求时,请求的接口权限过期。请提交工单联系我们

10044

USER_DAILY_QUERY_OVER_LIMIT

账号维度日调用量超出限制

账号维度日调用量超出限制,超出部分的请求被拒绝。限流阈值内的请求依旧会正常返回

10045

USER_ABROAD_DAILY_QUERY_OVER_LIMIT

账号维度海外服务日调用量超出限制

账号维度海外服务接口日调用量超出限制,超出部分的请求被拒绝。限流阈值内的请求依旧会正常返回

20000

INVALID_PARAMS

请求参数非法

请求参数的值没有按照规范要求填写。例如,某参数值域范围为[1,3],开发者误填了’4’

20001

MISSING_REQUIRED_PARAMS

缺少必填参数

缺少接口中要求的必填参数

20002

ILLEGAL_REQUEST

请求协议非法

请求协议非法

比如某接口仅支持get请求,结果用了POST方式

20003

UNKNOWN_ERROR

其他未知错误

其他未知错误

20011

INSUFFICIENT_ABROAD_PRIVILEGES

查询坐标或规划点(包括起点、终点、途经点)在海外,但没有海外地图权限

使用逆地理编码接口、输入提示接口、周边搜索接口、路径规划接口时可能出现该问题,规划点(包括起点、终点、途经点)不在中国陆地范围内

20012

ILLEGAL_CONTENT

查询信息存在非法内容

使用搜索接口时可能出现该问题,通常是由于查询内容非法导致

20800

OUT_OF_SERVICE

规划点(包括起点、终点、途经点)不在中国陆地范围内

使用路径规划服务接口时可能出现该问题,规划点(包括起点、终点、途经点)不在中国大陆陆地范围内

20801

NO_ROADS_NEARBY

划点(起点、终点、途经点)附近搜不到路

使用路径规划服务接口时可能出现该问题,划点(起点、终点、途经点)附近搜不到路

20802

ROUTE_FAIL

路线计算失败,通常是由于道路连通关系导致

使用路径规划服务接口时可能出现该问题,路线计算失败,通常是由于道路连通关系导致

20803

OVER_DIRECTION_RANGE

起点终点距离过长。

使用路径规划服务接口时可能出现该问题,路线计算失败,通常是由于道路起点和终点距离过长导致。

300**

ENGINE_RESPONSE_DATA_ERROR

服务响应失败。

出现3开头的错误码,建议先检查传入参数是否正确,若无法解决,请详细描述错误复现信息,提工单给我们。(大数据接口请直接跟负责商务反馈)

如,30001、30002、30003、32000、32001、32002、32003、32200、32201、32202、32203。

40000

QUOTA_PLAN_RUN_OUT

余额耗尽

所购买服务的余额耗尽,无法继续使用服务

40001

GEOFENCE_MAX_COUNT_REACHED

围栏个数达到上限

Key可创建的地理围栏的数量,已达上限。

40002

SERVICE_EXPIRED

购买服务到期

所购买的服务期限已到,无法继续使用

40003

ABROAD_QUOTA_PLAN_RUN_OUT

海外服务余额耗尽

所购买服务的海外余额耗尽,无法继续使用服务

-
diff --git a/.setup/plugins/amap/inputtips.html b/.setup/plugins/amap/inputtips.html deleted file mode 100644 index 73948840..00000000 --- a/.setup/plugins/amap/inputtips.html +++ /dev/null @@ -1,272 +0,0 @@ -
-

- 输入提示 - 最后更新时间: 2026年02月02日 -

-

产品介绍

输入提示是一类简单的 HTTP 接口,提供根据用户输入的关键词查询返回建议列表。

适用场景

在高德客户端的使用场景,输入“仙林”之后出现提示相关。

使用限制

服务调用量的限制请点击 这里 查阅。  

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

输入提示

输入提示API服务地址

URL

请求方式

https://restapi.amap.com/v3/assistant/inputtips?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

keywords

查询关键词

必填

type

POI 分类

服务可支持传入多个分类,多个类型剑用“|”分隔

可选值:POI 分类名称、分类代码

此处强烈建议使用分类代码,否则可能会得到不符合预期的结果

可选 

location

坐标

格式:“X,Y”(经度,纬度),不可以包含空格

建议使用 location 参数,可在此 location 附近优先返回搜索关键词信息

在请求参数 city 不为空时生效

可选 

city

搜索城市

可选值:citycode、adcode,不支持县级市。

如:010/110000

adcode 信息可参考 城市编码表 获取。

填入此参数后,会尽量优先返回此城市数据,但是不一定仅局限此城市结果,若仅需要某个城市数据请调用 citylimit 参数。

如:在深圳市搜天安门,返回北京天安门结果。

可选 

无(默认在全国范围内搜索)

citylimit

仅返回指定城市数据

可选值:true/false

可选

false

datatype

返回的数据类型

多种数据类型用“|”分隔,可选值:all-返回所有数据类型、poi-返回POI数据类型、bus-返回公交站点数据类型、busline-返回公交线路数据类型

可选 

all

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回数据格式类型

可选值:JSON,XML

可选

JSON

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

可选

返回结果参数说明

输入提示的响应结果的格式由请求参数 output 指定。

参数名

含义

规则说明

status

返回状态

值为0或1

1:成功;0:失败

info

返回的状态信息

status 为0时,info 返回错误原;否则返回“OK”。详情参阅 info 状态表

count

返回结果总数目

tips

建议提示列表

tip

提示信息

id

返回数据 ID

若数据为 POI 类型,则返回 POI ID;若数据为 bus 类型,则返回 bus id;若数据为 busline 类型,则返回 busline id。

name

tip 名称

district

所属区域

省+市+区(直辖市为“市+区”)

adcode

区域编码

六位区县编码

location

tip 中心点坐标

当搜索数据为 busline 类型时,此字段不返回

address

详细地址

服务示例

https://restapi.amap.com/v3/assistant/inputtips?output=xml&city=010&keywords=招商银行&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

keywords

-
-
-
-
-
-
-

查询关键词

-
-

-
-

type

-
-
-
-
-
-
-

- 查询 POI 类型 -

-
-

-
-

location

-
-
-
-
-
-
-

- - 经度,纬度;建议使用 location 参数,可在此 location 附近优先返回搜索关键词信息 - -

-
-

-
-

city

-
-
-
-
-
-
-

- - 查询城市。可选值:城市中文、中文全拼、citycode、adcode - -

-
-

-
-

datatype

-
-
-
- -
-
-
-

- - 多种数据类型用“|”分隔
- 可选值:
- all:返回所有数据类型;
- poi:返回POI数据类型;
- bus:返回公交站点数据类型;
- busline:返回公交线路数据类型 -
-

-
-

-
-
-
diff --git a/.setup/plugins/amap/ip.html b/.setup/plugins/amap/ip.html deleted file mode 100644 index dce1cf9e..00000000 --- a/.setup/plugins/amap/ip.html +++ /dev/null @@ -1,135 +0,0 @@ -
-

- 高级IP定位 - 最后更新时间: 2026年02月02日 -

-

产品介绍

IP 定位是一套简单的 HTTP 接口,根据用户输入的 IP 地址,能够快速的帮用户定位 IP 的所在位置。同时支持 IPV4、IPV6,同时支持国外 IP 解析。高级IP定位服务由高德开放平台与埃文科技联合提供。

提示

高级 IP 定位属于高级服务接口。如需申请,请通过 工单 进行商务咨询。

适用场景

希望能够将 IP 信息转换为地理位置信息。

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

高级 IP 定位

IP 定位 API 服务地址:

URL

请求方式

https://restapi.amap.com/v5/ip/location?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

type

ip 类型

可选值:

4:ipv4

6:ipv6

必填

4

ip

ip 地址

需要搜索的 IP 地址(支持国内、国外地址解析)

必填

sig

签名

请参考 数字签名获取和使用方法选择数字签名认证的付费用户必填

可选

服务示例

https://restapi.amap.com/v5/ip/location?key=<用户的key>&ip=114.247.50.2&type=4

返回结果参数说明

名称

含义

规则说明

status

返回结果状态值

值为0或1,0表示失败;1表示成功

info

返回状态说明

返回状态说明,status 为0时,info 返回错误原因,否则返回“OK”。

infocode

状态码

返回状态说明,10000代表正确,详情参阅 info 状态表

country

国家名称

例:中国

province

省份名称

若为直辖市则显示直辖市名称;

如果在局域网 IP 网段内,则返回“局域网”;

非法 IP 则返回空

city

城市名称

若为直辖市则显示直辖市名称;

如果为局域网网段内 IP 或者非法 IP,则返回空

district

区县

区(四级)

adcode

区县 adcode 编码

adcode 信息可参考 城市编码表 获取

location

经纬度

经度在前,纬度在后

isp

运营商

ip

ip 地址

查询的 ip

提示

返回结果:country=中国时,接口将把提供的经纬度数据转换为高德坐标系(GCJ-02);若country≠中国时,则将直接输出原始的经纬度数据(即WGS-84坐标系)。

-
diff --git a/.setup/plugins/amap/ipconfig.html b/.setup/plugins/amap/ipconfig.html deleted file mode 100644 index 78b55828..00000000 --- a/.setup/plugins/amap/ipconfig.html +++ /dev/null @@ -1,172 +0,0 @@ -
-

- IP定位 - 最后更新时间: 2026年02月02日 -

-

产品介绍

IP 定位是一套简单的 HTTP 接口,根据用户输入的 IP 地址,能够快速的帮用户定位 IP 的所在位置。

IP 定位:仅支持 IPV4,不支持国外 IP 解析。

适用场景

希望能够将 IP 信息转换为地理位置信息。

使用限制

服务调用量的限制请点击 这里 查阅。  

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

IP 定位

IP 定位API服务地址

URL

请求方式

https://restapi.amap.com/v3/ip?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

ip

ip 地址

需要搜索的 IP 地址(仅支持国内)

若用户不填写 IP,则取客户 http 之中的请求来进行定位

可选

sig

签名

请参考 数字签名获取和使用方法,选择数字签名认证的付费用户必填

可选

返回结果参数说明

IP定位查询的响应结果的格式由请求参数output指定。

名称

含义

规则说明

status

返回结果状态值

值为0或1,0表示失败;1表示成功

info

返回状态说明

返回状态说明,status 为0时,info 返回错误原因,否则返回“OK”。

infocode

状态码

返回状态说明,10000代表正确,详情参阅 info 状态表

province

省份名称

若为直辖市则显示直辖市名称;

如果在局域网 IP 网段内,则返回“局域网”;

非法 IP 以及国外 IP 则返回空

city

城市名称

若为直辖市则显示直辖市名称;

如果为局域网网段内 IP 或者非法 IP 或国外 IP,则返回空

adcode

城市的 adcode 编码

adcode 信息可参考 城市编码表 获取

rectangle

所在城市矩形区域范围

所在城市范围的左下右上对标对

服务示例

https://restapi.amap.com/v3/ip?ip=114.247.50.2&output=xml&key=<用户的key>
- - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

ip

-
-
-
-
-
-
-

需要搜索的 IP 地址(仅支持国内)
-若用户不填写 IP,则取客户 HTTP 之中的请求来进行定位

-
-

-
-
-
diff --git a/.setup/plugins/amap/newpoisearch.html b/.setup/plugins/amap/newpoisearch.html deleted file mode 100644 index 2d0a7cec..00000000 --- a/.setup/plugins/amap/newpoisearch.html +++ /dev/null @@ -1,444 +0,0 @@ -
-

- 搜索POI 2.0 - 最后更新时间: 2026年03月18日 -

-

产品概述

地点搜索服务2.0是一类 Web API 接口服务;服务提供多种场景的地点搜索能力,包括关键字搜索、周边搜索、多边形区域搜索、ID 搜索。

目前搜索是不支持返回全量数据的,同请求参数翻页查询最多支持获取200条数据

功能介绍 

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

关键字搜索

关键字搜索 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/place/text?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型Key

必填

keywords

地点关键字

需要被检索的地点文本信息。

只支持一个关键字 ,文本总长度不可超过80字符

必填(keyword 或者 types 二选一必填)

types

指定地点类型

地点文本搜索接口支持按照设定的 POI 类型限定地点搜索结果;地点类型与 poi typecode 是同类内容,可以传入多个 poi typecode,相互之间用“|”分隔,内容可以参考 POI 分类码表;地点(POI)列表的排序会按照高德搜索能力进行综合权重排序;

可选(keyword 或者 types 二选一必填)

region

搜索区划

增加指定区域内数据召回权重,如需严格限制召回数据在区域内,请搭配使用 city_limit 参数,可输入 citycode,adcode,cityname;cityname 仅支持城市级别和中文,如“北京市”。

可选

无,默认全国范围内搜索

city_limit

指定城市数据召回限制

可选值:true/false

为 true 时,仅召回 region 对应区域内数据。

可选

false

show_fields

返回结果控制

show_fields 用来筛选 response 结果中可选字段。show_fields 的使用需要遵循如下规则:

1、具体可指定返回的字段类请见下方返回结果说明中的show_fields内字段类型;

2、多个字段间采用“,”进行分割;

3、show_fields 未设置时,只返回基础信息类内字段。

可选

page_size

当前分页展示的数据条数

page_size 的取值1-25

可选

page_size 默认为10

page_num

请求第几分页

请求第几分页

可选

page_num 默认为1

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回结果格式类型

默认格式为 json,目前只支持 json 格式;

可选

json

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

服务示例

https://restapi.amap.com/v5/place/text?keywords=北京大学&types=141201&region=北京市&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

keywords

-
-
-
-
-
-
-

地点关键字,需要被检索的地点文本信息
- - 只支持一个关键字 ,文本总长度不可超过80字符

-
-

keyword 或者 types 二选一

-
-

types

-
-
-
-
-
-
-

- 指定地点类型,地点文本搜索接口支持按照设定的 POI 类型限定地点搜索结果;地点类型与 poi typecode 是同类内容,可以传入多个 poi typecode,相互之间用“|”分隔,内容可以参考 POI 分类码表;地点(POI)列表的排序会按照高德搜索能力进行综合权重排序; -

-
-

keyword 或者 types 二选一

-
-

region

-
-
-
-
-
-
-

- - 搜索区划,增加指定区域内数据召回权重,如需严格限制召回数据在区域内,请搭配使用 city_limit 参数,可输入 citycode,adcode,cityname;cityname 仅支持城市级别和中文,如“北京市”。 - -

-
-

可选

-
-

返回结果

名称

类型

说明

status

string

本次 API 访问状态,如果成功返回1,如果失败返回0。

info

string

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

string

返回状态说明,10000代表正确,详情参阅info状态表

count

string

单次请求返回的实际 poi 点的个数

pois

object

返回的 poi 完整集合

poi

单个 poi 内包含的完整返回数据

name

string

poi 名称

id

string

poi 唯一标识

parent

string

父 POI 的 ID,当前 POI 如果有父 POI,则返回父 POI 的 ID。可能为空

distance

string

离中心点距离,单位米;仅在周边搜索的时候有值返回

location

string

poi 经纬度

type

string

poi 所属类型

typecode

string

poi 分类编码

pname

string

poi 所属省份

cityname

string

poi 所属城市

adname

string

poi 所属区县

address

string

poi 详细地址

pcode

string

poi 所属省份编码

adcode

string

poi 所属区域编码

citycode

string

poi 所属城市编码

注意以下字段如需返回需要通过“show_fields”进行参数类设置。

children

object

设置后返回子 POI 信息

id

string

子 poi 唯一标识

name

string

子 poi 名称

location

string

子 poi 经纬度

address

string

子 poi 详细地址

subtype

string

子 poi 所属类型

typecode

string

子 poi 分类编码

sname

string

子 poi 分类信息

business

object

设置后返回 poi 商业信息

business_area

string

poi 所属商圈

opentime_today

string

poi 今日营业时间,如 08:30-17:30 08:30-09:00 12:00-13:30 09:00-13:00

opentime_week

string

poi 营业时间描述,如 周一至周五:08:30-17:30(延时服务时间:08:30-09:00;12:00-13:30);周六延时服务时间:09:00-13:00(法定节假日除外)

tel

string

poi 的联系电话

tag

string

poi 特色内容,目前仅在美食poi下返回

rating

string

poi 评分,目前仅在餐饮、酒店、景点、影院类 POI 下返回

cost

string

poi 人均消费,目前仅在餐饮、酒店、景点、影院类 POI 下返回

parking_type

string

停车场类型(地下、地面、路边),目前仅在停车场类 POI 下返回

alias

string

poi 的别名,无别名时不返回

keytag

string

poi 标识,用于确认poi信息类型 

rectag

string

用于再次确认信息类型 

indoor

object

设置后返回室内相关信息

indoor_map

string

是否有室内地图标志,1为有,0为没有

cpid

string

如果当前 POI 为建筑物类 POI,则 cpid 为自身 POI ID;如果当前 POI 为商铺类 POI,则 cpid 为其所在建筑物的 POI ID。

indoor_map 为0时不返回

floor

string

楼层索引,一般会用数字表示,例如8;indoor_map 为0时不返回

truefloor

string

所在楼层,一般会带有字母,例如F8;indoor_map 为0时不返回

navi

object

设置后返回导航位置相关信息

navi_poiid

string

poi 对应的导航引导点坐标。大型面状 POI 的导航引导点,一般为各类出入口,方便结合导航、路线规划等服务使用

entr_location

string

poi 的入口经纬度坐标

exit_location

string

poi 的出口经纬度坐标

gridcode

string

poi 的地理格 id

photos

object

设置后返回 poi 图片相关信息

title

string

poi 的图片介绍

url

string

poi 图片的下载链接

周边搜索

周边搜索 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/place/around?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填

keywords

地点关键字

需要被检索的地点文本信息。

只支持一个关键字 ,文本总长度不可超过80字符

可选

types

指定地点类型

地点文本搜索接口支持按照设定的POI类型限定地点搜索结果;地点类型与 poi typecode 是同类内容,可以传入多个 poi typecode,相互之间用“|”分隔,内容可以参考 POI 分类码表;地点(POI)列表的排序会按照高德搜索能力进行综合权重排序;

当 keywords 和 types 均为空的时候,默认指定 types 为050000(餐饮服务)、070000(生活服务)、120000(商务住宅)

可选

050000(餐饮服务)

070000(生活服务)

120000(商务住宅)

location

中心点坐标

圆形区域检索中心点,不支持多个点。经度和纬度用","分割,经度在前,纬度在后,经纬度小数点后不得超过6位

必填

radius

搜索半径

取值范围:0-50000,大于50000时按默认值,单位:米

可选

5000

sortrule

排序规则

规定返回结果的排序规则。

按距离排序:distance;综合排序:weight

可选

distance

region

搜索区划

增加指定区域内数据召回权重,如需严格限制召回数据在区域内,请搭配使用 city_limit 参数,可输入行政区划名或对应 citycode 或 adcode

可选

无,默认全国范围内搜索

city_limit

指定城市数据召回限制

可选值:true/false

为 true 时,仅召回 region 对应区域内数据

可选

false

show_fields

返回结果控制

show_fields 用来筛选 response 结果中可选字段。show_fields 的使用需要遵循如下规则:

1、具体可指定返回的字段类请见下方返回结果说明中的show_fields内字段类型;

2、多个字段间采用“,”进行分割;

3、show_fields 未设置时,只返回基础信息类内字段。

可选

page_size

当前分页展示的数据条数

page_size 的取值1-25

可选

page_size 默认为 10

page_num

请求第几分页

请求第几分页

可选

page_num 默认为 1

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回结果格式类型

默认格式为 json,目前只支持 json 格式;

可选

json

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

服务示例

https://restapi.amap.com/v5/place/around?location=116.473168,39.993015&radius=10000&types=011100&key=<用户的key>
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-

参数

-
-

-
-

备注

-
-

必选

-
-

location

-
-
-
-
-
-
-

中心点坐标
- 圆形区域检索中心点,不支持多个点。经度和纬度用","分割,经度在前,纬度在后,经纬度小数点后不得超过6位

-
-

-
-

radius

-
-
-
-
-
-
-

- 搜索半径
- 取值范围:0-50000,大于50000时按默认值,单位:米
-

-
-

可选

-
-

types

-
-
-
-
-
-
-

- - 指定地点类型,地点文本搜索接口支持按照设定的POI类型限定地点搜索结果;地点类型与 poi typecode 是同类内容,可以传入多个poi typecode,相互之间用“|”分隔,内容可以参考 POI 分类码表;地点(POI)列表的排序会按照高德搜索能力进行综合权重排序; - -

-
-

可选

-
-

返回结果

名称

类型

说明

status

string

本次 API 访问状态,如果成功返回1,如果失败返回0。

info

string

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

string

返回状态说明,10000代表正确,详情参阅 info 状态表

count

string

单次请求返回的实际 poi 点的个数

pois

object

返回的 poi 完整集合

poi

单个 poi 内包含的完整返回数据

name

string

poi 名称

id

string

poi 唯一标识

parent

string

父 POI 的 ID,当前 POI 如果有父 POI,则返回父 POI 的 ID。可能为空

location

string

poi 经纬度

distance

string

离中心点距离,单位米

type

string

poi 所属类型

typecode

string

poi 分类编码

pname

string

poi 所属省份

cityname

string

poi 所属城市

adname

string

poi 所属区县

address

string

poi 详细地址

pcode

string

poi 所属省份编码

adcode

string

poi 所属区域编码

citycode

string

poi 所属城市编码

注意以下字段如需返回需要通过“show_fields”进行参数类设置。

children

object

设置后返回子 POI 信息

id

string

子 poi 唯一标识

name

string

子 poi 名称

location

string

子 poi 经纬度

address

string

子 poi 详细地址

subtype

string

子 poi 所属类型

typecode

string

子 poi 分类编码

sname

string

子 poi 分类信息

business

object

设置后返回 poi 商业信息

business_area

string

poi 所属商圈

opentime_today

string

poi 今日营业时间,如 08:30-17:30 08:30-09:00 12:00-13:30 09:00-13:00

opentime_week

string

poi 营业时间描述,如 周一至周五:08:30-17:30(延时服务时间:08:30-09:00;12:00-13:30);周六延时服务时间:09:00-13:00(法定节假日除外)

tel

string

poi 的联系电话

tag

string

poi 特色内容,目前仅在美食 poi 下返回

rating

string

poi 评分,目前仅在餐饮、酒店、景点、影院类 POI 下返回

cost

string

poi 人均消费,目前仅在餐饮、酒店、景点、影院类 POI 下返回

parking_type

string

停车场类型(地下、地面、路边),目前仅在停车场类 POI 下返回

alias

string

poi 的别名,无别名时不返回

keytag

string

poi 标识,用于确认poi信息类型 

rectag

string

用于再次确认信息类型 

indoor

object

设置后返回室内相关信息

indoor_map

string

是否有室内地图标志,1为有,0为没有

cpid

string

如果当前 POI 为建筑物类 POI,则 cpid 为自身 POI ID;如果当前 POI 为商铺类 POI,则 cpid 为其所在建筑物的 POI ID。

indoor_map 为0时不返回

floor

string

楼层索引,一般会用数字表示,例如8;indoor_map 为0时不返回

truefloor

string

所在楼层,一般会带有字母,例如F8;indoor_map 为0时不返回

navi

object

设置后返回导航位置相关信息

navi_poiid

string

poi 对应的导航引导点坐标。大型面状 POI 的导航引导点,一般为各类出入口,方便结合导航、路线规划等服务使用

entr_location

string

poi 的入口经纬度坐标

exit_location

string

poi 的出口经纬度坐标

gridcode

string

poi 的地理格 id

photos

object

设置后返回 poi 图片相关信息

title

string

poi 的图片介绍

url

string

poi 图片的下载链接

多边形区域搜索

多边形区域搜索 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/place/polygon?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填

polygon

多边形区域

多个坐标对集合,坐标对用"|"分割。多边形为矩形时,可传入左上右下两顶点坐标对;其他情况下首尾坐标对需相同。

必填

keywords

地点关键字

需要被检索的地点文本信息。

只支持一个关键字 ,文本总长度不可超过80字符

可选

types

指定地点类型

地点文本搜索接口支持按照设定的 POI 类型限定地点搜索结果;地点类型与 poi typecode 是同类内容,可以传入多个 poi typecode,相互之间用“|”分隔,内容可以参考 POI 分类码表;地点(POI)列表的排序会按照高德搜索能力进行综合权重排序;

可选

120000(商务住宅)

150000(交通设施服务)

show_fields

返回结果控制

show_fields 用来筛选 response 结果中可选字段。show_fields 的使用需要遵循如下规则:

1、具体可指定返回的字段类请见下方返回结果说明中的show_fields内字段类型;

2、多个字段间采用“,”进行分割;

3、show_fields 未设置时,只返回基础信息类内字段。

可选

page_size

当前分页展示的数据条数

page_size 的取值1-25

可选

page_size 默认为10

page_num

请求第几分页

请求第几分页

可选

page_num 默认为1

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回结果格式类型

默认格式为 json,目前只支持 json 格式;

可选

json

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

服务示例

https://restapi.amap.com/v5/place/polygon?polygon=116.460988,40.006919|116.48231,40.007381|116.47516,39.99713|116.472596,39.985227|116.45669,39.984989|116.460988,40.006919&keywords=肯德基&types=050301&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

polygon

-
-
-
-
-
-
-

多边形区域,多个坐标对集合,坐标对用"|"分割。多边形为矩形时,可传入左上右下两顶点坐标对;其他情况下首尾坐标对需相同

-
-

-
-

keywords

-
-
-
-
-
-
-

- 地点关键字,需要被检索的地点文本信息
- 只支持一个关键字
-

-
-

可选

-
-

types

-
-
-
-
-
-
-

- - 指定地点类型,地点文本搜索接口支持按照设定的 POI 类型限定地点搜索结果;地点类型与 poi typecode 是同类内容,可以传入多个 poi typecode,相互之间用“|”分隔,内容可以参考 POI 分类码表;地点(POI)列表的排序会按照高德搜索能力进行综合权重排序; - -

-
-

可选

-
-

返回结果

名称

类型

说明

status

string

本次 API 访问状态,如果成功返回1,如果失败返回0。

info

string

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

string

返回状态说明,10000代表正确,详情参阅 info 状态表

count

string

单次请求返回的实际 poi 点的个数

pois

object

返回的 poi 完整集合

poi

单个 poi 内包含的完整返回数据

name

string

poi 名称

id

string

poi 唯一标识

parent

string

父 POI 的 ID,当前 POI 如果有父 POI,则返回父 POI 的 ID。可能为空

distance

string

离中心点距离,单位米;仅在周边搜索的时候有值返回

location

string

poi 经纬度

type

string

poi 所属类型

typecode

string

poi 分类编码

pname

string

poi 所属省份

cityname

string

poi 所属城市

adname

string

poi所属区县

address

string

poi 详细地址

pcode

string

poi 所属省份编码

adcode

string

poi 所属区域编码

citycode

string

poi 所属城市编码

注意以下字段如需返回需要通过“show_fields”进行参数类设置。

children

object

设置后返回子 POI 信息

id

string

子 poi 唯一标识

name

string

子 poi 名称

location

string

子 poi 经纬度

address

string

子 poi 详细地址

subtype

string

子 poi 所属类型

typecode

string

子 poi 分类编码

business

object

设置后返回子 POI 信息

business_area

string

poi 所属商圈

tel

string

poi 的联系电话

tag

string

poi 特色内容,目前仅在美食 poi 下返回

rating

string

poi 评分,目前仅在餐饮、酒店、景点、影院类 POI 下返回

cost

string

poi 人均消费,目前仅在餐饮、酒店、景点、影院类 POI 下返回

parking_type

string

停车场类型(地下、地面、路边),目前仅在停车场类 POI 下返回

alias

string

poi 的别名,无别名时不返回

indoor

object

设置后返回室内相关信息

indoor_map

string

是否有室内地图标志,1为有,0为没有

cpid

string

如果当前 POI 为建筑物类 POI,则 cpid 为自身 POI ID;如果当前 POI 为商铺类 POI,则 cpid 为其所在建筑物的 POI ID。

indoor_map 为0时不返回

floor

string

楼层索引,一般会用数字表示,例如8;indoor_map 为0时不返回

truefloor

string

所在楼层,一般会带有字母,例如F8;indoor_map 为0时不返回

navi

object

设置后返回导航位置相关信息

navi_poiid

string

poi 对应的导航引导点坐标。大型面状 POI 的导航引导点,一般为各类出入口,方便结合导航、路线规划等服务使用

entr_location

string

poi 的入口经纬度坐标

exit_location

string

poi 的出口经纬度坐标

gridcode

string

poi 的地理格 id

photos

object

设置后返回 poi 图片相关信息

title

string

poi 的图片介绍

url

string

poi 图片的下载链接

ID搜索

ID搜索 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/place/detail?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填

id

poi唯一标识

最多可以传入10个 id,多个 id 之间用“|”分隔。

必填

show_fields

返回结果控制

show_fields 用来筛选 response 结果中可选字段。show_fields 的使用需要遵循如下规则:

1、具体可指定返回的字段类请见下方返回结果说明中的show_fields内字段类型;

2、多个字段间采用“,”进行分割;

3、show_fields未设置时,只返回基础信息类内字段。

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回结果格式类型

默认格式为 json,目前只支持 json 格式;

可选

json

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

服务示例

https://restapi.amap.com/v5/place/detail?id=B000A7BM4H|B0FFKEPXS2&key=<用户的key>
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-

参数

-
-

-
-

备注

-
-

必选

-
-

id

-
-
-
-
-
-
-

poi 唯一标识,最多可以传入10个 id,多个 id 之间用“|”分隔。

-
-

-
-

返回结果

名称

类型

说明

status

string

本次 API 访问状态,如果成功返回1,如果失败返回0。

info

string

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

string

返回状态说明,10000代表正确,详情参阅 info 状态表

pois

object

完整的 POI 列表

poi

object

单个 POI 返回的数据字段

name

string

poi 名称

id

string

poi 唯一标识

parent

string

父 POI 的 ID,当前 POI 如果有父 POI,则返回父 POI 的 ID。可能为空

distance

string

离中心点距离,单位米;仅在周边搜索的时候有值返回

location

string

poi 经纬度

type

string

poi 所属类型

typecode

string

poi 分类编码

pname

string

poi 所属省份

cityname

string

poi 所属城市

adname

string

poi 所属区县

address

string

poi 详细地址

pcode

string

poi 所属省份编码

adcode

string

poi 所属区域编码

citycode

string

poi 所属城市编码

atag

string

poi 类目,例如:985大学/粤菜

注意以下字段如需返回需要通过“show_fields”进行参数类设置。

children

object

设置后返回子 POI 信息

id

string

子 poi唯一标识

name

string

子 poi 名称

location

string

子 poi 经纬度

address

string

子 poi 详细地址

subtype

string

子 poi 所属类型

typecode

string

子 poi 分类编码

business

object

设置后返回子 POI 信息

business_area

string

poi 所属商圈

tel

string

poi 的联系电话

tag

string

poi 特色内容,目前仅在美食 poi 下返回

rating

string

poi 评分,目前仅在餐饮、酒店、景点、影院类 POI 下返回

cost

string

poi 人均消费,目前仅在餐饮、酒店、景点、影院类 POI 下返回

parking_type

string

停车场类型(地下、地面、路边),目前仅在停车场类 POI 下返回

alias

string

poi 的别名,无别名时不返回

indoor

object

设置后返回室内相关信息

indoor_map

string

是否有室内地图标志,1为有,0为没有

cpid

string

如果当前 POI 为建筑物类 POI,则 cpid 为自身 POI ID;如果当前 POI 为商铺类 POI,则 cpid 为其所在建筑物的 POI ID。

indoor_map 为0时不返回

floor

string

楼层索引,一般会用数字表示,例如8;indoor_map 为0时不返回

truefloor

string

所在楼层,一般会带有字母,例如F8;indoor_map 为0时不返回

navi

object

设置后返回导航位置相关信息

navi_poiid

string

poi 对应的导航引导点坐标。大型面状 POI 的导航引导点,一般为各类出入口,方便结合导航、路线规划等服务使用

entr_location

string

poi 的入口经纬度坐标

exit_location

string

poi 的出口经纬度坐标

gridcode

string

poi 的地理格 id

photos

object

设置后返回 poi 图片相关信息

title

string

poi 的图片介绍

url

string

poi 图片的下载链接

-
diff --git a/.setup/plugins/amap/newroute.html b/.setup/plugins/amap/newroute.html deleted file mode 100644 index d9968592..00000000 --- a/.setup/plugins/amap/newroute.html +++ /dev/null @@ -1,552 +0,0 @@ -
-

- 路径规划2.0 - 最后更新时间: 2026年02月02日 -

-

产品介绍

路线规划接口2.0是一类 Web API 接口服务,以 HTTP/HTTPS 形式提供了多种路线规划服务。支持驾车、公交、步行、骑行、电动车路线规划。

功能介绍 

驾车路线规划:开发者可根据起终点坐标检索符合条件的驾车路线规划方案,支持一次请求返回多条路线结果、支持传入多个途经点、支持传入车牌规避限行、支持根据不同业务场景设置不同的算路策略等。

步行路线规划:开发者可根据起终点坐标检索符合条件的步行路线规划方案。

公交路线规划:开发者可根据起终点坐标检索符合条件的公共交通路线规划方案,支持结合业务场景设置不同的公交换乘策略。

骑行路线规划:开发者可根据起终点坐标检索符合条件的骑行路线规划方案。

电动车路线规划:开发者可根据起终点坐标检索符合条件的电动车路线规划方案,与骑行略有不同的是会考虑限行等条件。

流量限制

服务调用量的限制请点击 这里 查阅。

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
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-
-
-
3
-
第三步
-
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- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

驾车路线规划

驾车路线规划 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/direction/driving?parameters

GET,当参数过长导致请求失败时,需要使用 POST 方式请求

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网申请 Web 服务 API 类型 Key

必填

origin

起点经纬度

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

destination

目的地

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

destination_type

终点的 poi 类别

当用户知道终点 POI 的类别时候,建议填充此值

origin_id

起点 POI ID

起点为 POI 时,建议填充此值,可提升路线规划准确性

可选

destination_id

目的地 POI ID

目的地为 POI 时,建议填充此值,可提升路径规划准确性

可选

strategy

驾车算路策略

0:速度优先(只返回一条路线),此路线不一定距离最短

1:费用优先(只返回一条路线),不走收费路段,且耗时最少的路线

2:常规最快(只返回一条路线)综合距离/耗时规划结果

32:默认,高德推荐,同高德地图APP默认

33:躲避拥堵

34:高速优先

35:不走高速

36:少收费

37:大路优先

38:速度最快

39:躲避拥堵+高速优先

40:躲避拥堵+不走高速

41:躲避拥堵+少收费

42:少收费+不走高速

43:躲避拥堵+少收费+不走高速

44:躲避拥堵+大路优先

45:躲避拥堵+速度最快

可选

32

waypoints

途经点

途径点坐标串,默认支持1个有序途径点。多个途径点坐标按顺序以英文分号;分隔。最大支持16个途经点。

可选

avoidpolygons

避让区域

区域避让,默认支持1个避让区域,每个区域最多可有16个顶点;多个区域坐标按顺序以英文竖线符号“|”分隔,如果是四边形则有四个坐标点,如果是五边形则有五个坐标点;最大支持32个避让区域。

每个避让区域不能超过81平方公里,否则避让区域会失效。

可选

plate

车牌号码

车牌号,如 京AHA322,支持6位传统车牌和7位新能源车牌,用于判断限行相关。

可选

cartype

车辆类型

0:普通燃油汽车

1:纯电动汽车

2:插电式混动汽车

可选

0

ferry

是否使用轮渡

0:使用渡轮

1:不使用渡轮 

可选

0

show_fields

返回结果控制

show_fields 用来筛选 response 结果中可选字段。show_fields的使用需要遵循如下规则:

1、具体可指定返回的字段类请见下方返回结果说明中的show_fields内字段类型;

2、多个字段间采用“,”进行分割;

3、show_fields 未设置时,只返回基础信息类内字段;

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回结果格式类型

可选值:JSON

可选

json

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

服务示例

https://restapi.amap.com/v5/direction/driving?origin=116.434307,39.90909&destination=116.434446,39.90816&key=<用户的key>
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-

参数

-
-

-
-

备注

-
-

必选

-
-

origin

-
-
-
-
-
-
-

起点经纬度,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位

-
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-
-

destination

-
-
-
-
-
-
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目的地,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位

-
-

-
-

destination_id

-
-
-
-
-
-
-

目的地 POI ID,目的地为 POI 时,建议填充此值,可提升路径规划准确性

-
-

-
-

返回结果

名称

类型

说明

status

string

本次 API 访问状态,如果成功返回1,如果失败返回0。

info

string

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

string

返回状态说明,10000代表正确,详情参阅 info 状态表

count

string

路径规划方案总数

route

object

返回的规划方案列表

origin

string

起点经纬度

destination

string

终点经纬度

taxi_cost

string

预计出租车费用,单位:元

paths

object

算路方案详情

distance

string

方案距离,单位:米

restriction

string

0 代表限行已规避或未限行,即该路线没有限行路段

1 代表限行无法规避,即该线路有限行路段

steps

object

路线分段

instruction

string

行驶指示

orientation

string

进入道路方向

road_name

string

分段道路名称

step_distance

string

分段距离信息

注意以下字段如果需要返回,需要通过“show_fields”进行参数类设置。

show_fields

string

可选差异化结果返回

cost

object

设置后可返回方案所需时间及费用成本

duration

string

线路耗时,分段 step 中的耗时,单位:秒

tolls

string

此路线道路收费,单位:元,包括分段信息

toll_distance

string

收费路段里程,单位:米,包括分段信息

toll_road

string

主要收费道路

traffic_lights

string

方案中红绿灯个数,单位:个

tmcs

object

设置后可返回分段路况详情

tmc_status

string

路况信息,包括:未知、畅通、缓行、拥堵、严重拥堵

tmc_distance

string

从当前坐标点开始 step 中路况相同的距离

tmc_polyline

string

此段路况涉及的道路坐标点串,点间用","分隔

navi

object

设置后可返回详细导航动作指令

action

string

导航主要动作指令

assistant_action

string

导航辅助动作指令

cities

object

设置后可返回分段途径城市信息

adcode

string

途径区域编码

citycode

string

途径城市编码

city

string

途径城市名称

district

object

途径区县信息

name

string

途径区县名称

adcode

string

途径区县 adcode

polyline

string

设置后可返回分路段坐标点串,两点间用“;”分隔

步行路线规划

步行路线规划 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/direction/walking?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填

origin

起点信息

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

destination

目的地信息

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

origin_id

起点 POI ID

起点为 POI 时,建议填充此值,可提升路线规划准确性

可选

destination_id

目的地 POI ID

目的地为 POI 时,建议填充此值,可提升路线规划准确性

可选

alternative_route

返回路线条数

1:多备选路线中第一条路线

2:多备选路线中前两条路线

3:多备选路线中三条路线

不传则默认返回一条路线方案

可选

show_fields

返回结果控制

show_fields 用来筛选 response 结果中可选字段。show_fields 的使用需要遵循如下规则:

1、具体可指定返回的字段类请见下方返回结果说明中的show_fields内字段类型;

2、多个字段间采用“,”进行分割;

3、show_fields 未设置时,只返回基础信息类内字段。

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

isindoor

是否需要室内算路

0:不需要

1:需要

可选

0

output

返回结果格式类型

可选值:JSON

可选

json

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

服务示例

https://restapi.amap.com/v5/direction/walking?isindoor=0&origin=116.466485,39.995197&destination=116.46424,40.020642&key=<用户的key>
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参数

-
-

-
-

备注

-
-

必选

-
-

isindoor

-
-
-
- -
-
-
-

- - 是否需要室内算路:
- 0:不需要
- 1:需要
-
-

-
-

-
-

origin

-
-
-
-
-
-
-

起点信息,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

-
-

-
-

destination

-
-
-
-
-
-
-

- 目的地信息,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。 -

-
-

-
-

返回结果

名称

类型

说明

status

string

本次 API 访问状态,如果成功返回1,如果失败返回0。

info

string

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

string

返回状态说明,10000代表正确,详情参阅 info 状态表

count

string

路径规划方案总数

route

object

返回的规划方案列表

origin

string

起点经纬度

destination

string

终点经纬度

paths

object

算路方案详情

distance

string

方案距离,单位:米

steps

object

路线分段

instruction

string

步行指示

orientation

string

进入道路方向

road_name

string

分段道路名称

step_distance

string

分段距离信息

注意以下字段如果需要返回,需要通过“show_fields”进行参数类设置。

cost

object

设置后可返回方案所需时间及费用成本。注意:steps 中不返回 taxi 字段。

duration

string

线路耗时,包括方案总耗时及分段 step 中的耗时,单位:秒

taxi

string

预估打车费用

navi

object

设置后可返回详细导航动作指令

action

string

导航主要动作指令

assistant_action

string

导航辅助动作指令

walk_type

string

算路结果中存在的道路类型:

0,普通道路 1,人行横道 3,地下通道 4,过街天桥

5,地铁通道 6,公园 7,广场 8,扶梯 9,直梯

10,索道 11,空中通道 12,建筑物穿越通道

13,行人通道 14,游船路线 15,观光车路线 16,滑道

18,扩路 19,道路附属连接线 20,阶梯 21,斜坡

22,桥 23,隧道 30,轮渡

polyline

string

设置后可返回分路段坐标点串,两点间用“,”分隔

骑行路线规划 -

骑行路线规划 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/direction/bicycling?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填

origin

起点经纬度

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

destination

目的地

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

show_fields

返回结果控制

show_fields 用来筛选 response 结果中可选字段。show_fields 的使用需要遵循如下规则:

1、具体可指定返回的字段类请见下方返回结果说明中的show_fields内字段类型;

2、多个字段间采用“,”进行分割;

3、show_fields 未设置时,只返回基础信息类内字段。

可选

alternative_route

返回方案条数

1:多备选路线中第一条路线

2:多备选路线中前两条路线

3:多备选路线中三条路线

不传则默认返回一条路线方案

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回结果格式类型

可选值:JSON

可选

json

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

服务示例

https://restapi.amap.com/v5/direction/bicycling?origin=116.466485,39.995197&destination=116.46424,40.020642&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

origin

-
-
-
-
-
-
-

起点经纬度,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位

-
-

-
-

destination

-
-
-
-
-
-
-

- 目的地,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位 -

-
-

-
-

返回结果

名称

类型

说明

status

string

本次 API 访问状态,如果成功返回1,如果失败返回0。

info

string

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

string

返回状态说明,10000代表正确,详情参阅 info 状态表

count

string

路径规划方案总数

route

object

返回的规划方案列表

origin

string

起点经纬度

destination

string

终点经纬度

paths

object

算路方案详情

distance

string

方案距离,单位:米

steps

object

路线分段

instruction

string

骑行指示

orientation

string

进入道路方向

road_name

string

分段道路名称

step_distance

string

分段距离信息

注意以下字段如果需要返回,需要通过“show_fields”进行参数类设置。

cost

object

设置后可返回方案所需时间及费用成本

duration

string

线路耗时,包括方案总耗时及分段step中的耗时,单位:秒

navi

object

设置后可返回详细导航动作指令

action

string

导航主要动作指令

assistant_action

string

导航辅助动作指令

walk_type

string

算路结果中存在的道路类型:

0,普通道路 1,人行横道 3,地下通道 4,过街天桥

5,地铁通道 6,公园 7,广场 8,扶梯 9,直梯

10,索道 11,空中通道 12,建筑物穿越通道

13,行人通道 14,游船路线 15,观光车路线 16,滑道

18,扩路 19,道路附属连接线 20,阶梯 21,斜坡

22,桥 23,隧道 30,轮渡

polyline

string

设置后可返回分路段坐标点串,两点间用“,”分隔

电动车路线规划 -

电动车(骑行)路线规划 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/direction/electrobike?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填

origin

起点经纬度

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

destination

目的地

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

show_fields

返回结果控制

show_fields 用来筛选 response 结果中可选字段。show_fields 的使用需要遵循如下规则:

1、具体可指定返回的字段类请见下方返回结果说明中的show_fields内字段类型;

2、多个字段间采用“,”进行分割;

3、show_fields 未设置时,只返回基础信息类内字段。

可选

alternative_route

返回方案条数

1:多备选路线中第一条路线

2:多备选路线中前两条路线

3:多备选路线中三条路线

不传则默认返回一条路线方案

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回结果格式类型

可选值:JSON

可选

json

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

服务示例

https://restapi.amap.com/v5/direction/electrobike?origin=116.466485,39.995197&destination=116.46424,40.020642&key=<用户的key>
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-

参数

-
-

-
-

备注

-
-

必选

-
-

origin

-
-
-
-
-
-
-

起点经纬度,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位

-
-

-
-

destination

-
-
-
-
-
-
-

- 目的地,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位 -

-
-

-
-

返回结果

名称

类型

说明

status

string

本次 API 访问状态,如果成功返回1,如果失败返回0。

info

string

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

string

返回状态说明,10000代表正确,详情参阅 info 状态表

count

string

路径规划方案总数

route

object

返回的规划方案列表

origin

string

起点经纬度

destination

string

终点经纬度

paths

object

算路方案详情

distance

string

方案距离,单位:米

steps

object

路线分段

instruction

string

骑行指示

orientation

string

进入道路方向

road_name

string

分段道路名称

step_distance

string

分段距离信息

注意以下字段如果需要返回,需要通过“show_fields”进行参数类设置。

cost

object

设置后可返回方案所需时间及费用成本

duration

string

线路耗时,包括方案总耗时及分段step中的耗时,单位:秒

navi

object

设置后可返回详细导航动作指令

action

string

导航主要动作指令

assistant_action

string

导航辅助动作指令

walk_type

string

算路结果中存在的道路类型:

0,普通道路 1,人行横道 3,地下通道 4,过街天桥

5,地铁通道 6,公园 7,广场 8,扶梯 9,直梯

10,索道 11,空中通道 12,建筑物穿越通道

13,行人通道 14,游船路线 15,观光车路线 16,滑道

18,扩路 19,道路附属连接线 20,阶梯 21,斜坡

22,桥 23,隧道 30,轮渡

polyline

string

设置后可返回分路段坐标点串,两点间用“,”分隔

公交路线规划

公交路线规划 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/direction/transit/integrated?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

高德Key

用户在高德地图官网 申请 Web 服务 API 类型 Key

必填

origin

起点经纬度

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

destination

目的地经纬度

经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位。

必填

originpoi

起点 POI ID

1、起点 POI ID 与起点经纬度均填写时,服务使用起点 POI ID;

2、该字段必须和目的地 POI ID 成组使用。

可选

destinationpoi

目的地 POI ID

1、目的地 POI ID 与目的地经纬度均填写时,服务使用目的地  POI ID;

2、该字段必须和起点 POI ID 成组使用。

可选

ad1

起点所在行政区域编码

仅支持 adcode,参考行政区域编码表

可选

ad2

终点所在行政区域编码

仅支持 adcode,参考行政区域编码表

可选

city1

起点所在城市

仅支持 citycode,相同时代表同城,不同时代表跨城

必填

city2

目的地所在城市

strategy

公共交通换乘策略

可选值:

0:推荐模式,综合权重,同高德APP默认

1:最经济模式,票价最低

2:最少换乘模式,换乘次数少

3:最少步行模式,尽可能减少步行距离

4:最舒适模式,尽可能乘坐空调车

5:不乘地铁模式,不乘坐地铁路线

6:地铁图模式,起终点都是地铁站

(地铁图模式下 originpoi 及 destinationpoi 为必填项)

7:地铁优先模式,步行距离不超过4KM

8:时间短模式,方案花费总时间最少

可选

0

AlternativeRoute

返回方案条数

可传入1-10的阿拉伯数字,代表返回的不同条数。

可选

5

multiexport

地铁出入口数量

0:只返回一个地铁出入口

1:返回全部地铁出入口

可选

0

nightflag

考虑夜班车

可选值:

0:不考虑夜班车

1:考虑夜班车

可选

0

date

请求日期

例如:2013-10-28

可选

time

请求时间

例如:9-54

可选

show_fields

返回结果控制

show_fields 用来筛选 response 结果中可选字段。show_fields 的使用需要遵循如下规则:

1、具体可指定返回的字段类请见下方返回结果说明中的show_fields内字段类型;

2、多个字段间采用“,”进行分割;

3、show_fields 未设置时,只返回基础信息类内字段。

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回结果格式类型

可选值:JSON

可选

json

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。

可选

服务示例

https://restapi.amap.com/v5/direction/transit/integrated?origin=116.466485,39.995197&destination=116.46424,40.020642&key=<用户的key>&city1=010&city2=010
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

origin

-
-
-
-
-
-
-

起点经纬度,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位

-
-

-
-

destination

-
-
-
-
-
-
-

- 目的地,经度在前,纬度在后,经度和纬度用","分割,经纬度小数点后不得超过6位 -

-
-

-
-

city1

-
-
-
-
-
-
-

- - 起点所在城市,仅支持 citycode,相同时代表同城,不同时代表跨城 - -

-
-

-
-

city2

-
-
-
-
-
-
-

- - 目的地所在城市,仅支持 citycode,相同时代表同城,不同时代表跨城 - -

-
-

-
-

返回结果

名称

类型

说明

status

string

本次 API 访问状态,如果成功返回1,如果失败返回0。

info

string

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

infocode

string

返回状态说明,10000代表正确,详情参阅 info 状态表

count

string

路径规划方案总数

route

object

返回的规划方案列表

origin

string

起点经纬度

destination

string

终点经纬度

transits

object

公交方案列表

distance

string

本条路线的总距离,单位:米

nightflag

nightflag

0:非夜班车;1:夜班车

segments

object

路线分段

walking

string

此分段中需要步行导航的信息

steps

参考 v3老接口

bus

string

此分段中需要公交导航的信息

steps

参考 v3老接口

railway

string

此分段中需要火车的信息

steps

参考 v3老接口

taxi

price

string

打车预计花费金额

drivetime

string

打车预计花费时间

distance

string

打车距离

polyline

string

线路点集合,通过 show_fields 控制返回与否

startpoint

string

打车起点经纬度

startname

string

打车起点名称

endpoint

string

打车终点经纬度

endname

string

打车终点名称

注意以下字段如果需要返回,需要通过“show_fields”进行参数类设置。

cost

object

设置后可返回方案所需时间及费用成本注意:taxi_fee 只在 route 中返回,transit_fee 只在 segments 下返回。分段 steps 下不返回 cost。

duration

string

线路耗时,方案总耗时,包含等车时间,单位:秒

taxi_fee

string

预估出租车费用

transit_fee

string

各换乘方案总花费

navi

object

设置后可返回详细导航动作指令

action

string

导航主要动作指令

assistant_action

string

导航辅助动作指令

walk_type

string

算路结果中存在的道路类型:

0,普通道路 1,人行横道 3,地下通道 4,过街天桥

5,地铁通道 6,公园 7,广场 8,扶梯 9,直梯

10,索道 11,空中通道 12,建筑物穿越通道

13,行人通道 14,游船路线 15,观光车路线 16,滑道

18,扩路 19,道路附属连接线 20,阶梯 21,斜坡

22,桥 23,隧道 30,轮渡

polyline

string

设置后可返回分路段坐标点串,两点间用“,”分隔

-
diff --git a/.setup/plugins/amap/search.html b/.setup/plugins/amap/search.html deleted file mode 100644 index 5f3629b6..00000000 --- a/.setup/plugins/amap/search.html +++ /dev/null @@ -1,706 +0,0 @@ -
-

- 搜索POI - 最后更新时间: 2026年03月17日 -

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产品介绍

搜索服务 API 是一类简单的 HTTP 接口,提供多种查询 POI 信息的能力,其中包括关键字搜索、周边搜索、多边形搜索、ID 查询四种筛选机制。

目前搜索是不支持返回全量数据的,同请求参数翻页查询最多支持获取200条数据

注意

在此接口之中,您可以通过 city&citylimit 参数指定希望搜索的城市或区县。而 city 参数能够接收 citycode 和 adcode,citycode 仅能精确到城市,而 adcode 却能够精确到区县。

例如:北京,citycode:010,adcode:110000

北京-海淀区,citycode:010,adcode:110108

故使用 citycode 仅能在北京范围内搜索,而 adcode 能够指定在海淀区搜索。

综上所述,为了您查询的精确,我们强烈建议您使用 adcode。

适用场景    

使用限制

服务调用量的限制请点击 这里 查阅。  

使用说明

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第一步
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- 申请 - 【Web服务API】密钥(Key) -
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第二步
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- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
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第三步
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- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
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成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

关键字搜索

关键字搜索 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/place/text?parameters

GET

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parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

keywords

查询关键字

规则:  只支持一个关键字 

若不指定 city,并且搜索的为泛词(例如“美食”)的情况下,返回的内容为城市列表以及此城市内有多少结果符合要求。

必填(keyword 或者 types 二选一必填)

types

查询 POI 类型

可选值:分类代码 或 汉字(若用汉字,请严格按照附件之中的汉字填写)

规则: 多个关键字用“|”分割

分类代码由六位数字组成,一共分为三个部分,前两个数字代表大类;中间两个数字代表中类;最后两个数字代表小类。

若指定了某个大类,则所属的中类、小类都会被显示。

例如:010000为汽车服务(大类)

          010100为加油站(中类)

          010101为中国石化(小类)

          010900为汽车租赁(中类)

          010901为汽车租赁还车(小类)

当指定010000,则010100等中类、010101等小类会被包含,当指定010900,则010901等小类会被包含。

注意:返回结果可能会包含中小类POI,但不保证包含所有,如需更精确的信息,推荐输入小类或缩小范围查询

下载 POI 分类编码和城市编码表

若不指定 city,返回的内容为城市列表以及此城市内有多少结果符合要求。 

必填(keyword 或者 types 二选一必填)

city

查询城市

可选值:城市中文、citycode、adcode

如:北京/010/110000

填入此参数后,会尽量优先返回此城市数据,但是不一定仅局限此城市结果,若仅需要某个城市数据请调用 citylimit 参数。

如:在深圳市搜天安门,返回北京天安门结果。

可选

无(全国范围内搜索)

citylimit

仅返回指定城市数据

可选值:true/false

可选

false

children

是否按照层级展示子 POI 数据

可选值:children=1

当为0的时候,子 POI 都会显示。

当为1的时候,子 POI 会归类到父 POI 之中。

在 extensions=all 或者为空时生效

可选

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offset

每页记录数据

强烈建议不超过25,若超过25可能造成访问报错

可选

20

page

当前页数

当前页数

可选

1

extensions

返回结果控制

此项默认返回基本地址信息;取值为 all 返回地址信息、附近 POI、道路以及道路交叉口信息。

可选

base

sig

数字签名

请参考 数字签名获取和使用方法

可选

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

可选

返回结果参数说明

关键字搜索的响应结果的格式由请求参数 output 指定。

名称

含义

规则说明

status

结果状态值,值为0或1

0:请求失败;1:请求成功

info

返回状态说明

status 为0时,info 返回错误原因,否则返回“OK”。详情参阅 info状态表

count

搜索方案数目

suggestion

城市建议列表

当搜索的文本关键字在限定城市中没有返回时会返回建议城市列表;

keywords

关键字

cities

城市列表

name

名称

num

该城市包含此关键字的个数

citycode

该城市的 citycode

adcode

该城市的 adcode

pois

搜索 POI 信息列表

poi

POI 信息

id

唯一 ID

parent

父 POI 的 ID

当前 POI 如果有父 POI,则返回父 POI 的 ID。可能为空

name

名称

type

兴趣点类型

顺序为大类、中类、小类

例如:餐饮服务;中餐厅;特色/地方风味餐厅

typecode

兴趣点类型编码

例如:050118

biz_type

行业类型

address

地址

东四环中路189号百盛北门

location

经纬度

格式:X,Y

distance

离中心点距离

单位:米;仅在周边搜索的时候有值返回

tel

POI的电话

postcode

邮编

 extensions=all时返回

website

POI 的网址

 extensions=all时返回

email

POI 的电子邮箱

 extensions=all时返回

pcode

POI 所在省份编码

 extensions=all时返回

pname

POI 所在省份名称

若是直辖市的时候,此处直接显示市名,例如北京市

citycode

城市编码

 extensions=all 时返回

cityname

城市名

 若是直辖市的时候,此处直接显示市名,例如北京市 

adcode

区域编码

 extensions=all 时返回

adname

区域名称

区县级别的返回,例如朝阳区

entr_location

POI 的入口经纬度

 extensions=all 时返回,也可用作于 POI 的到达点;

exit_location

POI 的出口经纬度

目前不会返回内容;

navi_poiid

POI 导航 id

 extensions=all 时返回

gridcode

地理格ID

 extensions=all 时返回

alias

别名

 extensions=all 时返回

parking_type

停车场类型

仅在停车场类型 POI 的时候显示该字段

展示停车场类型,包括:地下、地面、路边

 extensions=all的时候显示 

 tag 

 该 POI 的特色内容

 主要出现在美食类 POI 中,代表特色菜

例如“烤鱼,麻辣香锅,老干妈回锅肉”

extensions=all 时返回

indoor_map

是否有室内地图标志

1,表示有室内相关数据

0,代表没有室内相关数据

 extensions=all 时返回

indoor_data

室内地图相关数据

当 indoor_map=0时,字段为空

 extensions=all 时返回 

cpid

当前 POI 的父级 POI

如果当前 POI 为建筑物类 POI,则 cpid 为自身 POI ID;如果当前 POI 为商铺类 POI,则 cpid 为其所在建筑物的 POI ID

floor

楼层索引

一般会用数字表示,例如8

truefloor

所在楼层

一般会带有字母,例如F8

groupbuy_num

团购数据

此字段逐渐废弃

business_area

所属商圈

 extensions=all 时返回

atag

类目

例如:985大学/粤菜。现状仅ID查询返回

discount_num

优惠信息数目

此字段逐渐废弃 

biz_ext

深度信息

 extensions=all 时返回

rating

评分

仅存在于餐饮、酒店、景点、影院类 POI 之下

cost

人均消费

仅存在于餐饮、酒店、景点、影院类 POI 之下 

meal_ordering

是否可订餐

仅存在于餐饮相关 POI 之下(此字段逐渐废弃)

seat_ordering

是否可选座

仅存在于影院相关 POI 之下(此字段逐渐废弃) 

ticket_ordering    

是否可订票

仅存在于景点相关 POI 之下(此字段逐渐废弃) 

hotel_ordering

是否可以订房

仅存在于酒店相关 POI 之下(此字段逐渐废弃) 

photos

照片相关信息

extensions=all 时返回

  title  

图片介绍

url

具体链接

服务示例

https://restapi.amap.com/v3/place/text?keywords=北京大学&city=beijing&offset=20&page=1&key=<用户的key>&extensions=all 
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keywords

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types

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city

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extensions

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说明:keywords(北京大学)是需要查询的关键词,city(北京)是查询的城市范围,offset(20)为每页返回的 POI 数量,page(1)为当前页数,extensions(all)为返回信息控制参数,key 是用户请求数据的身份标识。

周边搜索

周边搜索API服务地址

URL

请求方式

https://restapi.amap.com/v3/place/around?parameters 

GET

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请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

location

中心点坐标

规则: 经度和纬度用","分割,经度在前,纬度在后,经纬度小数点后不得超过6位

必填

keywords

查询关键字

规则:  只支持一个关键字  

可选

types

查询POI类型

多个类型用“|”分割;

可选值:分类代码 或 汉字 (若用汉字,请严格按照附件之中的汉字填写) 

分类代码由六位数字组成,一共分为三个部分,前两个数字代表大类;中间两个数字代表中类;最后两个数字代表小类。

若指定了某个大类,则所属的中类、小类都会被显示。

例如:010000为汽车服务(大类)

          010100为加油站(中类)

          010101为中国石化(小类)

          010900为汽车租赁(中类)

          010901为汽车租赁还车(小类)

当指定010000,则010100等中类、010101等小类会被包含。

当指定010900,则010901等小类会被包含

注意:返回结果可能会包含中小类POI,但不保证包含所有,如需更精确的信息,推荐输入小类或缩小范围查询

下载 POI 分类编码和城市编码表        

当 keywords 和 types 均为空的时候,默认指定 types 为050000(餐饮服务)、070000(生活服务)、120000(商务住宅)

可选

city

查询城市

可选值:城市中文、中文全拼、citycode、adcode

如:北京/beijing/010/110000

当用户指定的经纬度和 city 出现冲突,若范围内有用户指定 city 的数据,则返回相关数据,否则返回为空。

如:经纬度指定石家庄,而 city 却指定天津,若搜索范围内有天津的数据则返回相关数据,否则返回为空。

可选

无(全国范围内搜索)

radius

查询半径

取值范围:0-50000。规则:大于50000按默认值,单位:米

可选

5000

sortrule

排序规则

规定返回结果的排序规则。

按距离排序:distance;综合排序:weight

可选

distance

offset

每页记录数据

强烈建议不超过25,若超过25可能造成访问报错

可选

20

page

当前页数

当前页数

可选

1

extensions

返回结果控制

此项默认返回基本地址信息;取值为all返回地址信息、附近 POI、道路以及道路交叉口信息。

可选

base

sig

数字签名

请参考 数字签名获取和使用方法

可选

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

可选

返回结果参数说明

周边搜索搜索的响应结果的格式由请求参数 output 指定,返回结果见 关键字搜索

服务示例

https://restapi.amap.com/v3/place/around?key=<用户的key>&location=116.473168,39.993015&radius=10000&types=011100  
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说明:location(116.481488,39.990464)是需要查询的中心点,types(050301)为搜索的返回 POI 数据类型,extensions(all)为返回的数据内容,key 是用户请求数据的身份标识。

多边形搜索

多边形搜索API服务地址

URL

请求方式

https://restapi.amap.com/v3/place/polygon?parameters 

GET

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parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

polygon

经纬度坐标对

规则:经度和纬度用","分割,经度在前,纬度在后,坐标对用"|"分割。经纬度小数点后不得超过6位。         多边形为矩形时,可传入左上右下两顶点坐标对;其他情况下首尾坐标对需相同。

必填

keywords

查询关键字

规则:  只支持一个关键字  

可选

types

查询 POI 类型

多个类型用“|”分割;

可选值:分类代码 或 汉字 (若用汉字,请严格按照附件之中的汉字填写) 

分类代码由六位数字组成,一共分为三个部分,前两个数字代表大类;中间两个数字代表中类;最后两个数字代表小类。

若指定了某个大类,则所属的中类、小类都会被显示。

例如:010000为汽车服务(大类)

          010100为加油站(中类)

          010101为中国石化(小类)

          010900为汽车租赁(中类)

          010901为汽车租赁还车(小类)

当指定010000,则010100等中类、010101等小类会被包含。

当指定010900,则010901等小类会被包含

注意:返回结果可能会包含中小类POI,但不保证包含所有,如需更精确的信息,推荐输入小类或缩小范围查询

下载 POI 分类编码和城市编码表   

当 keywords 和 types 为空的时候, 我们会默认指定 types 为120000(商务住宅)&150000(交通设施服务) 

可选

offset

每页记录数据

强烈建议不超过25,若超过25可能造成访问报错

可选

20

page

当前页数

当前页数

可选

1

extensions

返回结果控制

此项默认返回基本地址信息;取值为all返回地址信息、附近 POI、道路以及道路交叉口信息。

可选

base

sig

数字签名

请参考 数字签名获取和使用方法

可选

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

可选

返回结果参数说明

多边形搜索搜索的响应结果的格式由请求参数 output 指定,返回结果见 关键字搜索

服务示例

https://restapi.amap.com/v3/place/polygon?polygon=116.460988,40.006919|116.48231,40.007381|116.47516,39.99713|116.472596,39.985227|116.45669,39.984989|116.460988,40.006919&keywords=kfc&key=<用户的key>
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polygon

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说明:polygon(116.460988,40.006919;116.48231,40.007381;116.47516,39.99713;116.472596,39.985227;116.45669,39.984989;116.460988,40.006919)是查询的区域范围,keywords(kfc)为查询的关键字,extensions(all)为返回的数据内容,key 是用户请求数据的身份标识。

ID查询

ID查询搜索API服务地址

URL

请求方式

https://restapi.amap.com/v3/place/detail?parameters

GET

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parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 Web 服务 API 类型 KEY

必填

id

AOI 唯一标识

最多可以传入1个 id,传入目标区域的poiid即可

必填

sig

数字签名

请参考 数字签名获取和使用方法

可选

callback

回调函数

callback 值是用户定义的函数名称,此参数只在 output=JSON 时有效

可选

返回结果参数说明

说明

如果未能获取到POI详情,请联系商务并提交工单申请高级权限

ID 查询搜索的响应结果的格式由请求参数 output 指定,返回结果见 关键字搜索

服务示例

https://restapi.amap.com/v3/place/detail?id=B0FFFAB6J2&key=<用户的key>
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说明:

ID(B0FFFAB6J2)是查询 POI ID,extensions(all)为返回的数据内容,key 是用户请求数据的身份标识。

AOI 边界查询

说明

该服务属于高德开放平台高阶服务,您在正式使用前需要通过 工单 等形式联系我们开通权限。

AOI 边界查询 API 服务地址

URL

请求方式

https://restapi.amap.com/v5/aoi/polyline?parameters

GET

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parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网申请 Web 服务 API 类型 KEY

必填

id

唯一标识

最多可以传入1个 id,传入目标区域的 poiid 即可

必填

sig

数字签名

请参考 数字签名获取和使用方法

可选

callback

回调函数

callback 值是用户定义的函数名称,此参数只在output=JSON时有效

可选

返回结果参数说明

注意:返回结果参数仅支持 json。

参数名

含义

status

本次 API 访问状态,如果成功返回0,如果失败返回其他数字。

info

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

aois

aoi 返回的详细数据字段

name

aoi 名称,同 poi

id

aoi 唯一标识

location

aoi 中心点经纬度

polyline

边界经纬度坐标串,以“_”分隔。

type

aoi 所属分类

typecode

aoi 分类编码

pname

aoi 所属省份

cityname

aoi 所属城市

adname

aoi 所属区域

address

aoi 详细地址

pcode

aoi 所属省份编码

citycode

aoi 所属城市编码

adcode

aoi 所属区域编码

提示

AOI 是指具有面状、区域状特点的 POI,包括但不限于工业园区、学校校区、商圈、住宅小区、景区、火车站、机场等类型的 POI。开发者可以通过结合此数据以及猎鹰轨迹服务中的 多边形围栏 等能力,基于真实地理区域数据对业务进行管理。

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diff --git a/.setup/plugins/amap/staticmaps.html b/.setup/plugins/amap/staticmaps.html deleted file mode 100644 index eeaf79a1..00000000 --- a/.setup/plugins/amap/staticmaps.html +++ /dev/null @@ -1,195 +0,0 @@ -
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- 静态地图 - 最后更新时间: 2026年02月02日 -

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产品介绍

静态地图服务通过返回一张地图图片响应 HTTP 请求,使用户能够将高德地图以图片形式嵌入自己的网页中。用户可以指定请求的地图位置、图片大小、以及在地图上添加覆盖物,如标签、标注、折线、多边形。

静态地图在使用的过程中,需要遵守高德开放平台 《自定义地图服务协议》

使用限制

 服务调用量的限制请点击 这里 查阅。  

使用说明

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第一步
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第二步
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第三步
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- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
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- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
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成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

功能介绍

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服务示例

https://restapi.amap.com/v3/staticmap?location=116.481485,39.990464&zoom=10&size=750*300&markers=mid,,A:116.481485,39.990464&key=<用户的key>

请求参数及用法

服务地址

URL

请求方式

https://restapi.amap.com/v3/staticmap?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名称

含义

规则说明

是否必填

默认值

key

用户唯一标识

用户在高德地图官网申请

必填

location

地图中心点

中心点坐标。

规则:经度和纬度用","分隔 经纬度小数点后不得超过6位。

部分条件必填

zoom

地图级别

地图缩放级别:[1,17]

必填

size

地图大小

图片宽度*图片高度。最大值为1024*1024

可选

400*400

scale

普通/高清

1:返回普通图;

2:调用高清图,图片高度和宽度都增加一倍,zoom 也增加一倍(当zoom 为最大值时,zoom 不再改变)。

可选

1

markers

标注

使用规则见 markers 详细说明,标注最大数10个

可选

labels

标签

使用规则见 labels 详细说明,标签最大数10个

可选

paths

折线

使用规则见 paths 详细说明,折线和多边形最大数4个

可选

traffic

交通路况标识

底图是否展现实时路况。 可选值: 0,不展现;1,展现。

可选

0

sig

数字签名

数字签名认证用户必填

可选

注:如果有标注/标签/折线等覆盖物,则中心点(location)和地图级别(zoom)可选填。当请求中无 location 值时,地图区域以包含请求中所有的标注/标签/折线的几何中心为中心点;如请求中无 zoom,地图区域以包含请求中所有的标注/标签/折线为准,系统计算出 zoom 值。

markers

格式:

markers=markersStyle1:location1;location2..|markersStyle2:location3;location4..|markersStyleN:locationN;locationM.. 

location 为经纬度信息,经纬度之间使用","分隔,不同的点使用";"分隔。 markersStyle 可以使用系统提供的样式,也可以使用自定义图片。

系统 markersStyle:size,color,label。

markersStyle(参数名称)

说明

默认值

size

可选值: small,mid,large

small

color

选值范围:[0x000000, 0xffffff]

例如:

0x000000 black,

0x008000 green,

0x800080 purple,

0xFFFF00 yellow,

0x0000FF blue,

0x808080 gray,

0xffa500 orange,

0xFF0000 red,

0xFFFFFF white

0xFC6054

label

[0-9]、[A-Z]、[单个中文字] 当 size 为 small 时,图片不展现标注名。

markers 示例

https://restapi.amap.com/v3/staticmap?markers=mid,0xFF0000,A:116.37359,39.92437;116.47359,39.92437&key=您的key
提示

自定义markersStyle: -1,url,0。

-1表示为自定义图片,URL 为图片的网址。自定义图片只支持 PNG 格式。

https://restapi.amap.com/v3/staticmap?markers=-1,https://a.amap.com/jsapi_demos/static/demo-center/icons/poi-marker-default.png,0:116.37359,39.92437&key=您的key

labels

格式:

labels=labelsStyle1:location1;location2..|labelsStyle2:location3;location4..|labelsStyleN:locationN;locationM.. 

location 为经纬度信息,经纬度之间使用","分隔,不同的点使用";"分隔。

labelsStyle:label, font, bold, fontSize, fontColor, background。 各参数使用","分隔,如有默认值则可为空。

labelsStyle(参数名称)

说明

默认值

content

标签内容,字符最大数目为15

font

0:微软雅黑;

1:宋体;

2:Times New Roman;

3:Helvetica

0

bold

0:非粗体;

1:粗体

0

fontSize

字体大小,可选值[1,72]

10

fontColor

字体颜色,取值范围:[0x000000, 0xffffff]

0xFFFFFF

background

背景色,取值范围:[0x000000, 0xffffff]

0x5288d8

labels 示例:

https://restapi.amap.com/v3/staticmap?location=116.48482,39.94858&zoom=10&size=400*400&labels=朝阳公园,2,0,16,0xFFFFFF,0x008000:116.48482,39.94858&key=您的key

paths

格式:

paths=pathsStyle1:location1;location2..|pathsStyle2:location3;location4..|pathsStyleN:locationN;locationM.. 

location 为经纬度,经纬度之间使用","分隔,不同的点使用";"分隔。

pathsStyle:weight, color, transparency, fillcolor, fillTransparency。

pathsStyle(参数名称)

说明

默认值

weight

线条粗细。

可选值: [2,15]

5

color

折线颜色。 选值范围:[0x000000, 0xffffff]

例如:

0x000000 black,

0x008000 green,

0x800080 purple,

0xFFFF00 yellow,

0x0000FF blue,

0x808080 gray,

0xffa500 orange,

0xFF0000 red,

0xFFFFFF white

0x0000FF

transparency

透明度。

可选值[0,1],小数后最多2位,0表示完全透明,1表示完全不透明。

1

fillcolor

多边形的填充颜色,此值不为空时折线封闭成多边形。取值规则同color

fillTransparency

填充面透明度。

可选值[0,1],小数后最多2位,0表示完全透明,1表示完全不透明。

0.5

paths 示例:

https://restapi.amap.com/v3/staticmap?zoom=15&size=500*500&paths=10,0x0000ff,1,,:116.31604,39.96491;116.320816,39.966606;116.321785,39.966827;116.32361,39.966957&key=您的key
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diff --git a/.setup/plugins/amap/summary.html b/.setup/plugins/amap/summary.html deleted file mode 100644 index f2dcee03..00000000 --- a/.setup/plugins/amap/summary.html +++ /dev/null @@ -1,4933 +0,0 @@ - - - - 地理/逆地理编码-基础 API 文档-开发指南-Web服务 API | 高德地图API - - - - - - - - - - - - - - - - - -
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- - - 开发 - - - Web服务 API - - 开发指南 - - 基础 API 文档 - - 地理/逆地理编码 -
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- 地理/逆地理编码 - 最后更新时间: 2026年02月02日 -

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-

- 产品介绍 -

-

- 地理编码/逆地理编码 API 是通过 HTTP/HTTPS 协议访问远程服务的接口,提供结构化地址与经纬度之间的相互转化的能力。 -

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- 结构化地址的定义: -

- 首先,地址肯定是一串字符,内含国家、省份、城市、区县、城镇、乡村、街道、门牌号码、屋邨、大厦等建筑物名称。按照由大区域名称到小区域名称组合在一起的字符。一个有效的地址应该是独一无二的。注意:针对大陆、港、澳地区的地理编码转换时可以将国家信息选择性的忽略,但省、市、城镇等级别的地址构成是不能忽略的。暂时不支持返回台湾省的详细地址信息。 -

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- 适用场景  -

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    - 地理编码:将详细的结构化地址转换为高德经纬度坐标。且支持对地标性名胜景区、建筑物名称解析为高德经纬度坐标。 -结构化地址举例:北京市朝阳区阜通东大街6号转换后经纬度:116.480881,39.989410  -地标性建筑举例:天安门转换后经纬度:116.397499,39.908722 -
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    - 逆地理编码:将经纬度转换为详细结构化的地址,且返回附近周边的 POI、AOI 信息。 -例如:116.480881,39.989410 转换地址描述后:北京市朝阳区阜通东大街6号 -
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- 使用限制 -

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- 详细的服务调用量限制可  - - 点我查阅 - - -

-

- 使用说明 -

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1
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第一步
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- 申请 - - - 【Web服务API】 - - 密钥(Key) - -
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第二步
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拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
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第三步
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接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
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- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8 - 。 - -
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- 成为开发者并创建 Key  -

- 为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击 - - 具体操作 - - -

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- 地理编码 -

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- 地理编码 API 服务地址 -

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- URL -

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- 请求方式 -

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- https://restapi.amap.com/v3/geocode/geo?parameters -

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- GET -

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- 请求参数 -

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- 参数名 -

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- 含义 -

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- 规则说明 -

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- 是否必须 -

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- 缺省值 -

-
-

- key -

-
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- 高德Key -

-
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- 用户在高德地图官网  - - 申请 Web 服务 API 类型 Key - - -

-
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- 必填 -

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- address -

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- 结构化地址信息 -

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- 规则遵循:国家、省份、城市、区县、城镇、乡村、街道、门牌号码、屋邨、大厦,如:北京市朝阳区阜通东大街6号。 -

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- 必填 -

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- city -

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- 指定查询的城市 -

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- 可选输入内容包括:指定城市的中文(如北京)、指定城市的中文全拼(beijing)、citycode(010)、adcode(110000),不支持县级市。当指定城市查询内容为空时,会进行全国范围内的地址转换检索。 -

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- adcode 信息可参考  - - 城市编码表 - - 获取 -

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- 可选 -

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- sig -

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- 数字签名 -

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- 请参考  - - 数字签名获取和使用方法 - - -

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- output -

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- 返回数据格式类型 -

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- 可选输入内容包括:JSON,XML。设置 JSON 返回结果数据将会以 JSON 结构构成;如果设置 XML 返回结果数据将以 XML 结构构成。 -

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- 可选 -

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- JSON -

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- callback -

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- 回调函数 -

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- callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。 -

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- 可选 -

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- -

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- 返回结果参数说明 -

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- 响应结果的格式可以通过请求参数 output 指定,默认为 JSON 形式。 -

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- 以下是返回参数说明: -

- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
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- 名称 -

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- status -

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- 返回结果状态值 -

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- 返回值为 0 或 1,0 表示请求失败;1 表示请求成功。 -

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- count -

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- 返回结果的个数。 -

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- info -

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- geocodes -

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- city -

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- 地址所在的城市名 -

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- 例如:北京市 -

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- citycode -

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- 例如:010 -

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- district -

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- 地址所在的区 -

-
-

- 例如:朝阳区 -

-
-

- street -

-
-

- 街道 -

-
-

- 例如:阜通东大街 -

-
-

- number -

-
-

- 门牌 -

-
-

- 例如:6号 -

-
-

- adcode -

-
-

- 区域编码 -

-
-

- 例如:110101 -

-
-

- location -

-
-

- 坐标点 -

-
-

- 经度,纬度 -

-
-

- level -

-
-

- 匹配级别 -

-
-

- 参见下方的地理编码匹配级别列表 -

-
-

- -

-
- 提示 -

- 部分返回值当返回值存在时,将以字符串类型返回;当返回值不存在时,则以数组类型返回。 -

-
-

- 服务示例 -

-
-                                        https://restapi.amap.com/v3/geocode/geo?address=北京市朝阳区阜通东大街6号 &output=XML &key=<用户的key >
-                                    
-
- - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

address

-
-
-
- -
-
-
-

- 填写结构化地址信息:省份+城市+区县+城镇+乡村+街道+门牌号码 -

-
-

- -

-
-

city

-
-
-
- -
-
-
-

- 查询城市,可选:城市中文、中文全拼、citycode、adcode -

-
-

- -

-
-
-
- 示例说明 -

- address 是需要获取坐标的结构化地址,output(XML)用于指定返回数据的格式,Key 是用户请求数据的身份标识,详细可以参考上方的请求参数说明。 -

-
-

- 逆地理编码 -

-

- 逆地理编码 API 服务地址 -

- - - - - - - - - - - - - - - -
-

- URL -

-
-

- 请求方式 -

-
-

- https://restapi.amap.com/v3/geocode/regeo?parameters -

-
-

- GET -

-
- -
- parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 - -
-

- 请求参数 -

- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

- 参数名 -

-
-

- 含义 -

-
-

- 规则说明 -

-
-

- 是否必须 -

-
-

- 缺省值 -

-
-

- key -

-
-

- 高德Key -

-
-

- 用户在高德地图官网  - - 申请 Web 服务 API 类型 Key - - -

-
-

- 必填 -

-
-

- -

-
-

- location -

-
-

- 经纬度坐标 -

-
-

- 传入内容规则:经度在前,纬度在后,经纬度间以“,”分割,经纬度小数点后不要超过 6 位。 -

-
-

- 必填 -

-
-

- -

-
-

- poitype -

-
-

- 返回附近 POI 类型 -

-
-

- 以下内容需要 extensions 参数为 all 时才生效。 -

-

- 逆地理编码在进行坐标解析之后不仅可以返回地址描述,也可以返回经纬度附近符合限定要求的 POI 内容(在 extensions 字段值为 all 时才会返回 POI 内容)。设置 POI 类型参数相当于为上述操作限定要求。参数仅支持传入 POI TYPECODE,可以传入多个 POI TYPECODE,相互之间用“|”分隔。获取 POI TYPECODE 可以参考  - - POI 分类码表 - - -

-
-

- 可选 -

-
-

- -

-
-

- radius -

-
-

- 搜索半径 -

-
-

- radius 取值范围:0~3000,默认值:1000。单位:米 -

-
-

- 可选 -

-
-

- 1000 -

-
-

- extensions -

-
-

- 返回结果控制 -

-
-

- extensions 参数默认取值是 base,也就是返回基本地址信息; -

-

- extensions 参数取值为 all 时会返回基本地址信息、附近 POI 内容、道路信息以及道路交叉口信息。 -

-
-

- 可选 -

-
-

- base -

-
-

- roadlevel -

-
-

- 道路等级 -

-
-

- 以下内容需要 extensions 参数为 all 时才生效。 -

-

- 可选值:0,1  -当 roadlevel=0时,显示所有道路 ; -当 roadlevel=1时,过滤非主干道路,仅输出主干道路数据  -

-
-

- 可选 -

-
-

- -

-
-

- sig -

-
-

- 数字签名 -

-
-

- 请参考  - - 数字签名获取和使用方法 - - -

-
-

- 可选 -

-
-

- -

-
-

- output -

-
-

- 返回数据格式类型 -

-
-

- 可选输入内容包括:JSON,XML。设置 JSON 返回结果数据将会以 JSON 结构构成;如果设置 XML 返回结果数据将以 XML 结构构成。 -

-
-

- 可选 -

-
-

- JSON -

-
-

- callback -

-
-

- 回调函数 -

-
-

- callback 值是用户定义的函数名称,此参数只在 output 参数设置为 JSON 时有效。 -

-
-

- 可选 -

-
-

- -

-
-

- homeorcorp -

-
-

- 是否优化 POI 返回顺序 -

-
-

- 以下内容需要 extensions 参数为 all 时才生效。 -

-

- homeorcorp 参数的设置可以影响召回 POI 内容的排序策略,目前提供三个可选参数: -

-

- 0:不对召回的排序策略进行干扰。 -

-

- 1:综合大数据分析将居家相关的 POI 内容优先返回,即优化返回结果中 pois 字段的poi 顺序。 -

-

- 2:综合大数据分析将公司相关的 POI 内容优先返回,即优化返回结果中 pois 字段的poi 顺序。 -

-
-

- 可选 -

-
-

- 0 -

-
-

- 返回结果参数说明 -

-

- 逆地理编码的响应结果的格式由请求参数 output 指定。 -

- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

- 名称 -

-
-

- 含义 -

-
-

- 规则说明 -

-
-

- status -

-
-

- 返回结果状态值 -

-
-

- 返回值为 0 或 1,0 表示请求失败;1 表示请求成功。 -

-
-

- info -

-
-

- 返回状态说明 -

-
-

- 当 status 为 0 时,info 会返回具体错误原因,否则返回“OK”。详情可以参考  - - info 状态表 - - -

-
-

- regeocode -

-
-

- 逆地理编码列表 -

-
-

- 返回 regeocode 对象;regeocode 对象包含的数据如下: -

-
-

- -

-
-

- addressComponent -

-
-

- 地址元素列表 -

-
-

- -

-
-

- -

-
-

- country -

-
-

- 坐标点所在国家名称 -

-
-

- 例如:中国 -

-
-

- -

-

- province -

-
-

- 坐标点所在省名称  -

-
-

- 例如:北京市  -

-
-

- city -

-
-

- 坐标点所在城市名称 -

-
-

- 请注意:当城市是省直辖县时返回为空,以及城市为北京、上海、天津、重庆四个直辖市时,该字段返回为空; - - 省直辖县列表 - - -

-
-

- citycode -

-
-

- 城市编码 -

-
-

- 例如:010 -

-
-

- district -

-
-

- 坐标点所在区 -

-
-

- 例如:海淀区 -

-
-

- adcode -

-
-

- 行政区编码 -

-
-

- 例如:110108 -

-
-

- township -

-
-

- 坐标点所在乡镇/街道(此街道为社区街道,不是道路信息) -

-
-

- 例如:燕园街道 -

-
-

- towncode -

-
-

- 乡镇街道编码 -

-
-

- 例如:110101001000 -

-
-

- neighborhood -

-
-

- 社区信息列表 -

-
-

- -

-
-

- -

-
-

- name -

-
-

- 社区名称 -

-
-

- 例如:北京大学 -

-
-

- type -

-
-

- POI 类型 -

-
-

- 例如:科教文化服务;学校;高等院校 -

-

- -

-
-

- building -

-
-

- 楼信息列表 -

-
-

- -

-
-

- -

-
-

- name -

-
-

- 建筑名称 -

-
-

- 例如:万达广场 -

-
-

- type -

-
-

- 类型 -

-
-

- 例如:科教文化服务;学校;高等院校 -

-
-

- streetNumber -

-
-

- 门牌信息列表 -

-
-

- -

-
-

- -

-
-

- street -

-
-

- 街道名称 -

-
-

- 例如:中关村北二条 -

-
-

- number -

-
-

- 门牌号 -

-
-

- 例如:3号 -

-
-

- location -

-
-

- 坐标点 -

-
-

- 经纬度坐标点:经度,纬度 -

-
-

- direction -

-
-

- 方向 -

-
-

- 坐标点所处街道方位 -

-
-

- distance -

-
-

- 门牌地址到请求坐标的距离 -

-
-

- 单位:米 -

-
-

- seaArea -

-
-

- 所属海域信息 -

-
-

- 例如:渤海 -

-
-

- businessAreas -

-
-

- 经纬度所属商圈列表 -

-
-

- -

-
-

- -

-
-

- businessArea -

-
-

- 商圈信息 -

-
-

- -

-
-

- location -

-
-

- 商圈中心点经纬度 -

-
-

- -

-
-

- name -

-
-

- 商圈名称  -

-
-

- 例如:颐和园  -

-
-

- id -

-
-

- 商圈所在区域的 adcode  -

-
-

- 例如:朝阳区/海淀区  -

-
-

- -

-
-

- roads -

-
-

- 道路信息列表 -

-
-

- 请求参数 extensions 为 all 时返回如下内容 -

-
-

- -

-
-

- road -

-
-

- 道路信息 -

-
-

- -

-
-

- -

-
-

- id -

-
-

- 道路 id -

-
-

- -

-
-

- name -

-
-

- 道路名称 -

-
-

- -

-
-

- distance -

-
-

- 道路到请求坐标的距离 -

-
-

- 单位:米 -

-
-

- direction -

-
-

- 方位 -

-
-

- 输入点和此路的相对方位 -

-
-

- location -

-
-

- 坐标点 -

-
-

- -

-
-

- -

-
-

- roadinters -

-
-

- 道路交叉口列表 -

-
-

- 请求参数 extensions 为 all 时返回如下内容 -

-
-

- -

-
-

- roadinter -

-
-

- 道路交叉口 -

-
-

- -

-
-

- -

-
-

- distance -

-
-

- 交叉路口到请求坐标的距离 -

-
-

- 单位:米 -

-
-

- direction -

-
-

- 方位 -

-
-

- 输入点相对路口的方位 -

-
-

- location -

-
-

- 路口经纬度 -

-
-

- -

-
-

- first_id -

-
-

- 第一条道路 id -

-
-

- -

-
-

- first_name -

-
-

- 第一条道路名称 -

-
-

- -

-
-

- second_id -

-
-

- 第二条道路 id -

-
-

- -

-
-

- second_name -

-
-

- 第二条道路名称 -

-
-

- -

-
-

- -

-
-

- pois -

-
-

- poi 信息列表 -

-
-

- 请求参数 extensions 为 all 时返回如下内容 -

-
-

- -

-
-

- poi -

-
-

- poi 信息列表 -

-
-

- -

-
-

- -

-
-

- id -

-
-

- poi 的 id -

-
-

- -

-
-

- name -

-
-

- poi 点名称 -

-
-

- -

-
-

- type -

-
-

- poi 类型 -

-
-

- -

-
-

- tel -

-
-

- 电话 -

-
-

- -

-
-

- distance -

-
-

- 该 POI 的中心点到请求坐标的距离 -

-
-

- 单位:米 -

-
-

- direction -

-
-

- 方向 -

-
-

- 相对于输入点的方位 -

-
-

- address -

-
-

- poi 地址信息 -

-
-

- -

-
-

- location -

-
-

- 坐标点 -

-
-

- -

-
-

- businessarea -

-
-

- poi 所在商圈名称 -

-
-

- -

-
-

- aois -

-
-

- aoi 信息列表 -

-
-

- 请求参数 extensions 为 all 时返回如下内容 -

-
-

- -

-
-

- aoi -

-
-

- aoi 信息 -

-
-

- -

-
-

- -

-
-

- id -

-
-

- 所属 aoi 的 id -

-
-

- -

-
-

- name -

-
-

- 所属 aoi 名称 -

-
-

- -

-
-

- adcode -

-
-

- 所属 aoi 所在区域编码 -

-
-

- -

-
-

- location -

-
-

- 所属 aoi 中心点坐标 -

-
-

- -

-
-

- area -

-
-

- 所属 aoi 点面积 -

-
-

- 单位:平方米 -

-
-

- distance -

-
-

- 输入经纬度是否在 aoi 面之中 -

-
-

- 0,代表在 aoi 内 -

-

- 其余整数代表距离 AOI 的距离 -

-
-

- type -

-
-

- 所属 aoi 类型 -

-
-

- -

-
-

- -

-
- 提示 -

- 部分返回值当返回值存在时,将以字符串类型返回;当返回值不存在时,则以数组类型返回。 -

-
-

- 服务示例 -

-
-                                        https://restapi.amap.com/v3/geocode/regeo?output=xml &location=116.310003,39.991957 &key=<用户的key >&radius=1000 &extensions=all 
-                                    
-
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

location

-
-
-
- -
-
-
-

- 经纬度坐标 -

-
-

- -

-
-

poitype

-
-
-
- -
-
-
-

- 支持传入 POI TYPECODE 及名称;支持传入多个 POI 类型,多值间用“|”分隔 -

-
-

- -

-
-

radius

-
-
-
- -
-
-
-

- 查询 POI 的半径范围。取值范围:0~3000,单位:米 -

-
-

- -

-
-

- extensions -

-
-
-
- -
-
-
-

- 返回结果控制 - -

-
-

- -

-
-

roadlevel

-
-
-
- -
-
-
-

- 可选值:1,当 roadlevel=1时,过滤非主干道路,仅输出主干道路数据 -

-
-

- -

-
-
-
- 说明 -

- location(116.310003,39.991957) 是所需要转换的坐标点经纬度,radius(1000)为返回的附近 POI 的范围,单位:米,extensions(all)为返回的数据内容,output(XML)用于指定返回数据的格式,Key 是高德 Web 服务 Key。详细可以参考上方的请求参数说明。 -

-
-

- 地理编码匹配级别列表 -

- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

- 匹配级别 -

-
-

- 示例 -

-
-

- 国家 -

-
-

- 中国 -

-
-

- -

-
-

- 河北省、北京市 -

-
-

- -

-
-

- 宁波市   -

-
-

- 区县 -

-
-

- 北京市朝阳区 -

-
-

- 开发区   -

-
-

- 亦庄经济开发区   -

-
-

- 乡镇   -

-
-

- 回龙观镇   -

-
-

- 村庄   -

-
-

- 三元村   -

-
-

- 热点商圈   -

-
-

- 上海市黄浦区老西门   -

-
-

- 道路   -

-
-

- 北京市朝阳区阜通东大街   -

-
-

- 道路交叉路口   -

-
-

- 北四环西路辅路/善缘街   -

-
-

- 兴趣点   -

-
-

- 北京市朝阳区奥林匹克公园(南门)   -

-
-

- 门牌号   -

-
-

- 朝阳区阜通东大街6号   -

-
-

- 单元号   -

-
-

- 望京西园四区5号楼2单元   -

-
-

- 楼层   -

-
-

- 保留字段,建议兼容 -

-
-

- 房间   -

-
-

- 保留字段,建议兼容 -

-
-

- 公交地铁站点   -

-
-

- 海淀黄庄站 A1西北口   -

-
-

- 门址  (新增) -

-
-

- 北京市朝阳区阜荣街10号   -

-
-

- 小巷(新增)   -

-
-

- 保留字段,建议兼容 -

-
-

- 住宅区(新增)   -

-
-

- 广西壮族自治区柳州市鱼峰区德润路华润凯旋门   -

-
-

- 未知   -

-
-

- 未确认级别的 POI   -

-
-

- -

-
-
-
- -
- -
-
-
- -
- - - 返回顶部 - - - - 示例中心 - - - - 常见问题 - - - - 智能客服 - - - - - 公众号
二维码 -
- - - -
-
-
- - - - - - diff --git a/.setup/plugins/amap/traffic-incident.html b/.setup/plugins/amap/traffic-incident.html deleted file mode 100644 index 934f4486..00000000 --- a/.setup/plugins/amap/traffic-incident.html +++ /dev/null @@ -1,164 +0,0 @@ -
-

- 交通事件 - 最后更新时间: 2024年08月06日 -

-

产品介绍

交通事件查询接口可以获取授权城市有效事件,包括事故、施工、管制等信息。与导航结合为用户提供智能化的出行方案、避让问题路段;语音播报提升行车安全,让路径动态尽在其掌控。主要用于事件图层渲染、统计、融合计算等场景。支持全国360+城市,更新频率2分钟。

说明

交通事件接口属于商业化接口,如需申请请通过 工单 进行商务咨询。

使用限制

使用城市/区域授权+时间包年方式,有每日访问量/QPS限制

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 如需申请请通过 工单 进行商务咨询 -
-
-
-
-
3
-
第三步
-
-
- 根据授权文档进行动态鉴权访问 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

交通事件查询

API 查询地址

URL

请求方式

https://et-api.amap.com/event/queryByAdcode 

http 协议,GET 方法,不支持 JSONP/callback 参数

 请求参数

参数名

含义

规则说明

必填

adcode

城市代码

授权城市 ADCODE(城市级)

clientKey

请求服务权限标识

用户在高德开放平台官网申请 Web 服务 API 类型 KEY

timestamp

时间戳

秒时间,例如1621243952 单位秒

digest

鉴权动态密钥

根据授权密钥计算出的动态鉴权信息

eventType

事件类型

仅获取对应类型事件,多个;分割

isExpressway

只获取高速

仅获取高速类事件。1-是   0-否

 返回结果参数说明

返回结果为JSON格式

参数名称

描述与取值说明

code+msg 

调用成功,常见代码:

0:Successful.   成功

data

brief

事件标题

endTime

事件预计结束时间

eventDesc

事件描述

eventID

事件id

eventType

事件类型码

expressway

是否高速

1-是

0-否

lines

线路坐标

nickName

发布方名称

offcial

是否权威发布

0-官方

1-权威

2-UGC

picture

事件图片链接

roadName

道路名称

source

数据源编号

startTime

事件开始时间

updateTime

事件最后更新时间

x

经度坐标

y

维度坐标

 服务示例

//以下为json格式代码
-{
-    "code": 1,
-    "data": [
-    {
-        "brief": "张河高速服务区附近南向北正在施工。",  // 事件标题
-        "endTime": "2018-05-13 8:11:0",          // 事件预计结束时间
-        "eventDesc":                             // 事件描述
-                     "张河高速施工:张河高速南向北施工,2018年04月28日08:11到2018年05月13日08:11",
-        "eventID": 5366913,                     // 事件id
-        "eventType": 201,                       // 事件类型码
-        "expressway": 1,                        // 是否高速
-        "lines":                                // 线路坐标
-                 "102.0647958,35.6291286;102.0652033,35.6301692;102.0665325,35.6332136",
-        "nickName": "高德交通",               // 发布方名称
-        "offcial": 1,                          //  是否权威发布
-        "picture": "",                         // 事件图片链接
-        "roadName": "张河高速",                 // 道路名称
-        "source": 262,                        //  数据源编号
-        "startTime": "2018-04-28 8:11:0",     //  事件开始时间
-        "updateTime": "2018-05-07 22:47:18",  //  事件最后更新时间
-        "x": 102.0648,                        //  经度坐标
-        "y": 35.62913                         // 纬度坐标
-    },
-    {
-        "brief": "张河高速服务区附近北向南正在施工。",
-        "endTime": "2018-05-13 8:11:0",
-        "eventDesc": "张河高速施工:张河高速北向南施工,2018年04月28日08:11到2018年05月13日08:11",
-        "eventID": 5366911,
-        "eventType": 201,
-        "expressway": 1,
-        "lines": "102.0665169,35.6333375;102.0651394,35.6301856;102.0647158,35.6290914",
-        "nickName": "高德交通",
-        "offcial": 1,
-        "picture": "",
-        "roadName": "张河高速",
-        "source": 262,
-        "startTime": "2018-04-28 8:11:0",
-        "updateTime": "2018-05-07 22:46:47",
-        "x": 102.06652,
-        "y": 35.63334
-    }]
-}
-
diff --git a/.setup/plugins/amap/traffic-situation-inquiry.html b/.setup/plugins/amap/traffic-situation-inquiry.html deleted file mode 100644 index 65b07cd9..00000000 --- a/.setup/plugins/amap/traffic-situation-inquiry.html +++ /dev/null @@ -1,486 +0,0 @@ -
-

- 交通态势查询 - 最后更新时间: 2026年02月02日 -

-

产品介绍

交通态势查询 API 是一套以 HTTP 形式提供的接口,用于查询指定线路、圆形区域、矩形区域内的交通态势情况,可以根据用户输入的内容返回希望查询的交通态势情况。

提示

交通态势查询接口属于高级服务接口,如需申请,可进行 商务咨询

适用场景

该服务适用于实时交通信息查询、交通数据分析以及智能交通系统等场景。

提示

交通态势查询API支持的城市如下:杭州、西宁、南京、昆明、武汉、上海、珠海、沈阳、深圳、大连、宁波、西安、青岛、佛山、厦门、福州、合肥、长沙、温州、台州、常州、天津、东莞、成都、苏州、石家庄、长春、太原、济南、乌鲁木齐、绍兴、重庆、泉州、惠州、中山、无锡、广州、嘉兴、北京、金华。

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

指定线路交通态势查询

指定线路交通态势查询 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/traffic/status/road?parameters 

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

名称

含义

规则说明

是否必填

缺省值

key

用户唯一标识 

用户在高德地图官网 申请 Web 服务 API 类型 Key

sig

签名

选择数字签名认证的付费用户必填,数字签名获取和使用方法

level 

道路等级 

指定道路等级,下面各值代表的含义:  -1:高速(京藏高速)  -2:城市快速路、国道(西三环、103 国道)  -3:高速辅路(G6 辅路)  -4:主要道路(长安街、三环辅路)  -5:一般道路(彩和坊路)  -6:无名道路  -注:以上值是包含关系,如 5 除自身道路以外还包含 1,2,3,4 的道路 

name 

街道名 

道路名称

city

城市名

由于开发者可能对城市称呼和高德的称呼存在差异(例如开发者称呼为深圳,但高德仅识别深圳市)。  -故强烈建议使用 adcode,不使用 city 字段 

city 和 adcode 必填一个

adcode

城市编码 

由于开发者可能对城市称呼和高德的称呼存在差异(例如开发者称呼为深圳,但高德仅识别深圳市)。  -故强烈建议使用 adcode,不使用 city 字段 

adcode 信息可参考 城市编码表 获取

city 和 adcode 必填一个

output 

返回数据格式类型 

可选:JSON、XML

JSON

extensions

控制返回内容

可选:base,all

base:返回基本信息

all:返回基本+详细信息

base 

服务示例

https://restapi.amap.com/v3/traffic/status/road?name=北环大道&adcode=440300&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

level

-
-
-
- -
-
-
-

- - 指定道路等级,下面各值代表的含义:
- 1:高速(京藏高速)
- 2:城市快速路、国道(西三环、103 国道)
- 3:高速辅路(G6 辅路)
- 4:主要道路(长安街、三环辅路)
- 5:一般道路(彩和坊路)
- 6:无名道路
- 注:以上值是包含关系,如 5 除自身道路以外还包含 1,2,3,4 的道路
-
-

-
-

-
-

name

-
-
-
-
-
-
-

道路名称

-
-

-
-

city

-
-
-
-
-
-
-

- 由于开发者可能对城市称呼和高德的称呼存在差异(例如开发者称呼为深圳,但高德仅识别深圳市)。
-故强烈建议使用 adcode,不使用 city 字段 
-

-
-

city 和 adcode 必填一个

-
-

adcode

-
-
-
-
-
-
-

- - 由于开发者可能对城市称呼和高德的称呼存在差异(例如开发者称呼为深圳,但高德仅识别深圳市)。
- 故强烈建议使用 adcode,不使用 city 字段 
- adcode信息可参考城市编码表获取 -
-

-
-

city 和 adcode 必填一个

-
-

返回结果参数说明

关键字搜索的响应结果的格式由请求参数 output 指定。

名称

含义

说明

extensions 何值时值显示

status

返回结果状态值

值为 0 或 1,0表示失败;1表示成功

base/all

info 

返回状态说明

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

base/all 

infocode

返回状态说明

返回状态说明,10000 代表正确,详情参阅 info 状态表

base/all 

trafficinfo

交通态势信息

base/all  

description

路况综述

base/all  

evaluation

路况评价

base/all  

expedite

畅通所占百分比

base/all  

congested

缓行所占百分比

base/all

blocked

拥堵所占百分比

base/all

unknown

未知路段所占百分比

base/all

status

路况

0:未知;1:畅通;2:缓行;3:拥堵

base/all

description

道路描述

base/all  

roads

此为road列表,其中包含道路信息

all

name

道路名称

all

status

路况

0:未知;1:畅通;2:缓行;3:拥堵

all 

direction

方向描述

all 

angle

车行角度,判断道路正反向使用。

以正东方向为 0 度,顺时针方向为正,取值范围:[0,360]

all 

lcodes

负值表示反方向

all 

speed

平均速度

单位:km/hr,四舍五入取整

all 

polyline

道路坐标集,坐标集合

经度和纬度使用","分隔,坐标之间使用";"分隔。例如:x1,y1;x2,y2

all 

圆形区域内交通态势查询

圆形区域内交通态势查询 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/traffic/status/circle?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

名称

含义

规则说明

是否必填

缺省值

key

用户唯一标识 

用户在高德地图官网 申请 Web 服务 API 类型 Key

sig

签名

选择数字签名认证的付费用户必填, 数字签名获取和使用方法

level 

道路等级 

指定道路等级,下面各值代表的含义:  -1:高速(京藏高速)  -2:城市快速路、国道(西三环、103 国道)  -3:高速辅路(G6 辅路)  -4:主要道路(长安街、三环辅路)  -5:一般道路(彩和坊路)  -6:无名道路  -注:以上值是包含关系,如 5 除自身道路以外还包含 1,2,3,4 的道路  -

location 

中心点坐标 

经度在前,纬度在后。经度和纬度用","分割。经纬度小数点后不得超过6位。 

radius

半径

单位:米,最大取值 4999。 取值不支持小数。

1000

output 

返回数据格式类型 

可选:JSON、XML

JSON

extensions

控制返回内容

可选:base,all

base:返回基本信息

all:返回基本+详细信息

否  - -

base 

服务示例

https://restapi.amap.com/v3/traffic/status/circle?location=116.3057764,39.98641364&radius=1500&output=xml&extensions=all&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

level

-
-
-
- -
-
-
-

- - 指定道路等级,下面各值代表的含义:
- 1:高速(京藏高速)
- 2:城市快速路、国道(西三环、103 国道)
- 3:高速辅路(G6 辅路)
- 4:主要道路(长安街、三环辅路)
- 5:一般道路(彩和坊路)
- 6:无名道路
- 注:以上值是包含关系,如 5 除自身道路以外还包含 1,2,3,4 的道路
-
-

-
-

-
-

location

-
-
-
-
-
-
-

中心点坐标,经度在前,纬度在后。经度和纬度用","分割。经纬度小数点后不得超过6位

-
-

-
-

返回结果参数说明

关键字搜索的响应结果的格式由请求参数 output 指定。

名称

含义

说明

extensions何值时值显示

status

返回结果状态值

值为 0 或 1,0 表示失败;1 表示成功

base/all

info 

返回状态说明

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

base/all 

infocode

返回状态说明

返回状态说明,10000 代表正确,详情参阅 info 状态表

base/all 

trafficinfo

交通态势信息

base/all  

description

路况综述

base/all  

evaluation

路况评价

base/all  

expedite

畅通所占百分比

base/all  

congested

缓行所占百分比

base/all

blocked

拥堵所占百分比

base/all

unknown

未知路段所占百分比

base/all

status

路况

0:未知;1:畅通;2:缓行;3:拥堵

base/all

description

道路描述

base/all  

roads

此为 road 列表,其中包含道路信息

all

name

道路名称

all

status

路况

0:未知;1:畅通;2:缓行;3:拥堵

all 

direction

方向描述

all 

angle

车行角度,判断道路正反向使用。

以正东方向为 0 度,顺时针方向为正,取值范围:[0,360]

all 

lcodes

负值表示反方向

all 

speed

平均速度

单位:km/hr,四舍五入取整

all 

polyline

道路坐标集,坐标集合

经度和纬度使用","分隔,坐标之间使用";"分隔。例如:x1,y1;x2,y2

all 

矩形区域内交通态势查询

矩形区域内交通态势查询 API 服务地址

URL

请求方式

https://restapi.amap.com/v3/traffic/status/rectangle?parameters 

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

名称

含义

规则说明

是否必填

缺省值

key

用户唯一标识 

用户在高德地图官网 申请 Web 服务 API 类型 Key

sig

签名

选择数字签名认证的付费用户必填,数字签名获取和使用方法

level 

道路等级 

指定道路等级,下面各值代表的含义:  -1:高速(京藏高速)  -2:城市快速路、国道(西三环、103 国道)  -3:高速辅路(G6 辅路)  -4:主要道路(长安街、三环辅路)  -5:一般道路(彩和坊路)  -6:无名道路  -注:以上值是包含关系,如5除自身道路以外还包含 1,2,3,4 的道路  -

rectangle 

希望查询矩形坐标

左下右上顶点坐标对。矩形对角线不能超过 10 公里两个坐标对之间用”;”间隔。  -xy 之间用”,”间隔最后格式为 x1,y1;x2,y2

output 

可选:JSON、XML

JSON

extensions

控制返回内容

可选:base,all

base:返回基本信息

all:返回基本+详细信息

否  - -

base 

服务示例

https://restapi.amap.com/v3/traffic/status/rectangle?rectangle=116.351147,39.966309;116.357134,39.968727&output=xml&extensions=all&key=<用户的key>
- - - - - - - - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

level

-
-
-
- -
-
-
-

- - 指定道路等级,下面各值代表的含义:
- 1:高速(京藏高速)
- 2:城市快速路、国道(西三环、103 国道) 3:高速辅路(G6 辅路)
- 4:主要道路(长安街、三环辅路)
- 5:一般道路(彩和坊路)
- 6:无名道路
- 注:以上值是包含关系,如 5 除自身道路以外还包含 1,2,3,4 的道路
-
-

-
-

-
-

rectangle

-
-
-
-
-
-
-

希望查询矩形坐标,左下右上顶点坐标对。矩形对角线不能超过 10 公里两个坐标对之间用”;”间隔。 -xy 之间用”,”间隔最后格式为 x1,y1;x2,y2

-
-

-
-

返回结果参数说明

关键字搜索的响应结果的格式由请求参数 output 指定。

名称

含义

说明

extensions何值时值显示

status

返回结果状态值

值为 0 或 1,0 表示失败;1 表示成功

base/all

info 

返回状态说明

访问状态值的说明,如果成功返回"ok",失败返回错误原因,具体见 错误码说明

base/all 

infocode

返回状态说明

返回状态说明,10000 代表正确,详情参阅 info 状态表

base/all 

trafficinfo

交通态势信息

base/all  

description

路况综述

base/all  

evaluation

路况评价

base/all  

expedite

畅通所占百分比

base/all  

congested

缓行所占百分比

base/all

blocked

拥堵所占百分比

base/all

unknown

未知路段所占百分比

base/all

status

路况

0:未知;1:畅通;2:缓行;3:拥堵

base/all

description

道路描述

base/all  

roads

此为 road 列表,其中包含道路信息

all

name

道路名称

all

status

路况

0:未知;1:畅通;2:缓行;3:拥堵

all 

direction

方向描述

all 

angle

车行角度,判断道路正反向使用。

以正东方向为 0 度,顺时针方向为正,取值范围:[0,360]

all 

lcodes

负值表示反方向

all 

speed

平均速度

单位:km/hr,四舍五入取整

all 

polyline

道路坐标集,坐标集合

经度和纬度使用","分隔,坐标之间使用";"分隔。例如:x1,y1;x2,y2

all 

-
diff --git a/.setup/plugins/amap/weatherinfo.html b/.setup/plugins/amap/weatherinfo.html deleted file mode 100644 index e8e4fe7d..00000000 --- a/.setup/plugins/amap/weatherinfo.html +++ /dev/null @@ -1,171 +0,0 @@ -
-

- 天气查询 - 最后更新时间: 2026年02月02日 -

-

产品介绍

天气查询是一个简单的 HTTP 接口,根据用户输入的 adcode,查询目标区域当前/未来的天气情况。

提示

如需更高精度,或者更多深度内容(如积水、积雪)等高级天气能力,请通过 工单 进行商务咨询。

适用场景

需要使用相关天气查询的时候。

使用限制

服务调用量的限制请点击 这里 查阅。  

使用说明

- -
-
-
-
-
1
-
第一步
-
-
-
- 申请 - 【Web服务API】密钥(Key) -
-
- -
-
-
2
-
第二步
-
-
-
- 拼接 HTTP 请求 URL,第一步申请的 Key 需作为必填参数一同发送 -
-
-
-
-
3
-
第三步
-
-
- 接收 HTTP 请求返回的数据(JSON 或 XML 格式),解析数据 -
-
-
-
- 如无特殊声明,接口的输入参数和输出数据编码全部统一为 - UTF-8。 -
-
成为开发者并创建 Key 

为了正常调用 Web 服务 API ,请先注册成为高德开放平台开发者,并申请 Web 服务的 key ,点击具体操作

天气查询

天气查询API服务地址

URL

请求方式

https://restapi.amap.com/v3/weather/weatherInfo?parameters

GET

-
parameters - 代表的参数包括必填参数和可选参数。所有参数均使用和号字符(&)进行分隔。下面的列表枚举了这些参数及其使用规则。 -

请求参数

参数名

含义

规则说明

是否必须

缺省值

key

请求服务权限标识

用户在高德地图官网 申请 web 服务 API 类型 KEY

必填

city

城市编码

输入城市的 adcode,adcode 信息可参考 城市编码表

必填

extensions

气象类型

可选值:base/all

base:返回实况天气

all:返回预报天气

可选

sig

数字签名

请参考 数字签名获取和使用方法

可选

output

返回格式

可选值:JSON,XML

可选

JSON

返回结果参数说明

实况天气每小时更新多次,预报天气每天更新3次,分别在8、11、18点左右更新。由于天气数据的特殊性以及数据更新的持续性,无法确定精确的更新时间,请以接口返回数据的 reporttime 字段为准。天气结果对照表>>

名称

含义

规则说明

status

返回状态

值为0或1

1:成功;0:失败

count

返回结果总数目

info

返回的状态信息

infocode

返回状态说明,10000代表正确

lives

实况天气数据信息

province

省份名

city

城市名

adcode

区域编码

weather

天气现象(汉字描述)

temperature

实时气温,单位:摄氏度

winddirection

风向描述

windpower

风力级别,单位:级

humidity

空气湿度

reporttime

数据发布的时间

forecasts

预报天气信息数据

city

城市名称

adcode

城市编码

province

省份名称

reporttime

预报发布时间

casts

预报数据 list 结构,元素 cast,按顺序为当天、第二天、第三天、第四天的预报数据

date

日期

week

星期几

dayweather

白天天气现象

nightweather

晚上天气现象

daytemp

白天温度

nighttemp

晚上温度

daywind

白天风向

nightwind

晚上风向

daypower

白天风力

nightpower

晚上风力

服务示例

https://restapi.amap.com/v3/weather/weatherInfo?city=110101&key=<用户key>
- - - - - - - - - - - - - - - -
-

参数

-
-

-
-

备注

-
-

必选

-
-

city

-
-
-
-
-
-
-

需要查询天气的城市编码

-
-

-
-
-
diff --git a/.setup/plugins/aminer/64f02dc86221825d961dbde1.json b/.setup/plugins/aminer/64f02dc86221825d961dbde1.json deleted file mode 100644 index a95b2380..00000000 --- a/.setup/plugins/aminer/64f02dc86221825d961dbde1.json +++ /dev/null @@ -1 +0,0 @@ -{"success":true,"code":200,"msg":"","data":{"id":"64f02dc86221825d961dbde1","description":"根据专利ID获取专利标题、专利号、发明人、国家、专利号","price":0,"title":"专利信息","method":"get","url_online":"https://datacenter.aminer.cn/gateway/open_platform/api/patent/info","update_time":"2023-10-13T10:03:28.946862Z","header":[{"name":"Authorization","value":"Token"}],"param":[{"name":"id","type":"string","required":true,"maximum":null,"description":"id","example":"63370927667297566c3fb14f"}],"response_fields":[{"name":"app_num","type":"string","description":"申请号"},{"name":"country","type":"string","description":"国家"},{"name":"en","type":"array","description":"专利英文"},{"name":"id","type":"string","description":"id"},{"name":"inventor","type":"array","description":"发明人"},{"name":"name","type":"string","description":"姓名"},{"name":"pub_kind","type":"string","description":"发布类型"},{"name":"pub_num","type":"string","description":"发布号"},{"name":"sequence","type":"float","description":"顺序"},{"name":"title","type":"string","description":"标题"}],"example_online":{"request":"curl -X 'GET' 'https://datacenter.aminer.cn/gateway/open_platform/api/patent/info?id=63370927667297566c3fb14f' -H 'Authorization: 替换为从控制台中获取或你生成的token'","response":"{\"code\":200,\"success\":true,\"msg\":\"\",\"data\":[{\"app_num\":\"003108\",\"country\":\"kr\",\"id\":\"63370927667297566c3fb14f\",\"inventor\":[{\"name\":\"KIM J\",\"sequence\":1}],\"pub_kind\":\"U\",\"pub_num\":\"2017004205\",\"title\":{\"en\":[\"Towel and bag hanger for use as a laundry drying rack, comprises a character shaped holder, in which a bag hanging ring is adhered to the lower portion of holder by welding, where a nut hole is formed for attachment and detachment of bolt.\"]}}],\"log_id\":\"2WhhcFhJU3CCl0wRElN8V6qWDPn\"}"},"history_urls":["https://datacenter.aminer.cn/gateway/open_platform/api/v3/patent/brief/open"]}} \ No newline at end of file diff --git a/.setup/plugins/aminer/64f0386a6221825d961dbde2.json b/.setup/plugins/aminer/64f0386a6221825d961dbde2.json deleted file mode 100644 index d25c583d..00000000 --- a/.setup/plugins/aminer/64f0386a6221825d961dbde2.json +++ /dev/null @@ -1 +0,0 @@ -{"success":true,"code":200,"msg":"","data":{"id":"64f0386a6221825d961dbde2","description":"根据论文ID获取标题,卷号,期刊名称,作者名称","price":0,"title":"论文信息","method":"post","url_online":"https://datacenter.aminer.cn/gateway/open_platform/api/paper/info","update_time":"2023-10-13T10:06:18.068081Z","header":[{"name":"Content-Type","value":"application/json;charset=utf-8"},{"name":"Authorization","value":"Token"}],"param":[{"name":"ids","type":"[]string","required":true,"maximum":100,"description":"请求论文时候的id列表","example":"5ce2c5a5ced107d4c61c839b"}],"response_fields":[{"name":"_id","type":"string","description":"论文id"},{"name":"authors","type":"array","description":"作者 name 名称 name_zh 中文名称"},{"name":"issue","type":"string","description":"论文的卷号"},{"name":"name","type":"string","description":"作者名称"},{"name":"raw","type":"string","description":"期刊名称"},{"name":"title","type":"string","description":"论文标题"},{"name":"venue","type":"object","description":"期刊信息"}],"example_online":{"request":"curl -X 'POST' 'https://datacenter.aminer.cn/gateway/open_platform/api/paper/info' -H 'Content-Type: application/json;charset=utf-8' -H 'Authorization: 替换为从控制台中获取或你生成的token' -d '{\"ids\":[\"5ce2c5a5ced107d4c61c839b\"]}'","response":"{\"code\":200,\"success\":true,\"msg\":\"\",\"data\":[{\"_id\":\"5ce2c5a5ced107d4c61c839b\",\"authors\":[{\"name\":\"Shangshang Chen\"},{\"name\":\"Huatong Yao\"},{\"name\":\"Zhengke Li\"},{\"name\":\"Omar M. Awartani\"},{\"name\":\"Yuhang Liu\"},{\"name\":\"Zheng Wang\"},{\"name\":\"Guofang Yang\"},{\"name\":\"Jianquan Zhang\"},{\"name\":\"Harald Ade\"},{\"name\":\"He Yan\"}],\"title\":\"Surprising Effects upon Inserting Benzene Units into a Quaterthiophene‐Based D‐A Polymer–Improving Non‐Fullerene Organic Solar Cells via Donor Polymer Design\",\"venue\":{\"raw\":\"ADVANCED ENERGY MATERIALS\"},\"volume\":\"7\"}],\"log_id\":\"2WhhXfSs26WfrxvFID46Vnn55hd\"}"},"explanation":"获取id数组批量获取论文信息数组","history_urls":["https://datacenter.aminer.cn/gateway/open_platform/api/v3/paper/detail/list"]}} \ No newline at end of file diff --git a/.setup/plugins/aminer/64f03bf46221825d961dbde3.json b/.setup/plugins/aminer/64f03bf46221825d961dbde3.json deleted file mode 100644 index d263f50f..00000000 --- a/.setup/plugins/aminer/64f03bf46221825d961dbde3.json +++ /dev/null @@ -1 +0,0 @@ -{"success":true,"code":200,"msg":"","data":{"id":"64f03bf46221825d961dbde3","description":"根据专利名称搜索专利ID、专利标题、专利号","price":0,"title":"专利搜索","method":"post","url_online":"https://datacenter.aminer.cn/gateway/open_platform/api/patent/search","update_time":"2025-11-10T10:40:34.596048Z","header":[{"name":"Content-Type","value":"application/json;charset=utf-8"},{"name":"Authorization","value":"Token"}],"param":[{"name":"query","type":"string","required":true,"maximum":null,"description":"查询字段,如专利标题、关键词等","example":"Si02"},{"name":"page","type":"number","required":true,"maximum":null,"description":"页数","example":"0"},{"name":"size","type":"number","required":true,"maximum":null,"description":"每页展示","example":"20"}],"response_fields":[{"name":"id","type":"string","description":"专利id"},{"name":"title","type":"string","description":"专利英文标题"},{"name":"title_zh","type":"string","description":"专利中文标题"}],"example_online":{"request":"curl -X 'POST' 'https://datacenter.aminer.cn/gateway/open_platform/api/patent/search' -H 'Content-Type: application/json;charset=utf-8' -H 'Authorization: 替换为从控制台中获取或你生成的token' -d '{\"page\":0,\"query\":\"Si02\",\"size\":20}'","response":"{\"code\":200,\"msg\":\"操作成功\",\"status\":0,\"data\":[{\"id\":\"689983eb6d408010383b0cbe\",\"title\":null,\"title_zh\":\"基于大规模可重构光子大矩阵模型的矩阵计算方法与装置\"},{\"id\":\"689982f355d74813bd3b0965\",\"title\":null,\"title_zh\":\"辐射制冷器件、制冷器件模块及辐射制冷系统\"},{\"id\":\"689985b981f11665883b13dd\",\"title\":null,\"title_zh\":\"机械爪\"},{\"id\":\"6899820134961b2e973b0614\",\"title\":null,\"title_zh\":\"机械制冷与自然冷源耦合的复合辐射制冷系统\"},{\"id\":\"689983f94c70e90eee3b0d16\",\"title\":null,\"title_zh\":\"完全可重构通用智能光计算芯片架构与系统\"},{\"id\":\"6899815ee27ee9dd423b03c3\",\"title\":null,\"title_zh\":\"超快全光智能感算芯片系统与架构\"},{\"id\":\"689983cd1a598150683b0c86\",\"title\":null,\"title_zh\":\"可重构衍射通用智能光计算方法、架构与系统\"},{\"id\":\"689981e60eb4d4a5083b058a\",\"title\":null,\"title_zh\":\"蜂蜜生态产品的生长管理装置\"},{\"id\":\"682ac524974c4f3b075ea986\",\"title\":null,\"title_zh\":\"机械密封故障预警方法、装置、电子设备及程序产品\"},{\"id\":\"689982ab516b0a97ce3b083e\",\"title\":null,\"title_zh\":\"表曝机\"},{\"id\":\"682acfebb88894a0325ec4db\",\"title\":null,\"title_zh\":\"磁铁系统\"},{\"id\":\"689986032e54df57573b14b8\",\"title\":null,\"title_zh\":\"板栗生态产品的生长管理装置\"},{\"id\":\"689984a6deb0ccc1b43b0fbb\",\"title\":null,\"title_zh\":\"可拼接的桌子\"},{\"id\":\"682acdce3f89faa9985ebf01\",\"title\":null,\"title_zh\":\"用于在线光学监测的电极壳及电池组件\"},{\"id\":\"6899813abeffdd0d893b034c\",\"title\":null,\"title_zh\":\"连杆型抗倾覆装置\"},{\"id\":\"689986322e54df57573b1576\",\"title\":null,\"title_zh\":\"可调式X射线中心光束遮挡器\"},{\"id\":\"682ac5194efdca75895ea96e\",\"title\":null,\"title_zh\":\"一种光伏建筑一体化围护结构及光伏一体化建筑\"},{\"id\":\"689982079578c3dd163b0615\",\"title\":null,\"title_zh\":\"五轴联动数控机床联动误差综合补偿方法及装置\"},{\"id\":\"6899830c5b22d922b83b09e4\",\"title\":null,\"title_zh\":\"全密封的土壤水分传感器\"},{\"id\":\"682ac54a28eae8cec55ea9ff\",\"title\":null,\"title_zh\":\"片上光学元件及集成光学元件\"}]}"},"history_urls":["https://datacenter.aminer.cn/gateway/open_platform/api/v2/patent/search"]}} \ No newline at end of file diff --git a/.setup/plugins/aminer/64f03e746221825d961dbde4.json b/.setup/plugins/aminer/64f03e746221825d961dbde4.json deleted file mode 100644 index ee5d1be0..00000000 --- a/.setup/plugins/aminer/64f03e746221825d961dbde4.json +++ /dev/null @@ -1 +0,0 @@ -{"success":true,"code":200,"msg":"","data":{"id":"64f03e746221825d961dbde4","description":"根据论文标题获取论文标题、论文ID、论文DOI","price":0,"title":"论文搜索","method":"get","url_online":"https://datacenter.aminer.cn/gateway/open_platform/api/paper/search","update_time":"2025-11-19T10:19:31.522974Z","header":[{"name":"Authorization","value":"Token"}],"param":[{"name":"page","type":"number","required":true,"maximum":0,"description":"页码(从0开始), 最大值为0","example":"1"},{"name":"size","type":"number","required":false,"maximum":20,"description":"条数","example":"10"},{"name":"title","type":"string","required":true,"maximum":null,"description":"标题","example":"Looking at CTR Prediction Again: Is Attention All You Need"}],"response_fields":[{"name":"doi","type":"string","description":"论文的doi"},{"name":"id","type":"string","description":"id"},{"name":"title","type":"string","description":"论文标题"},{"name":"title_zh","type":"string","description":"论文中文标题"},{"name":"total","type":"float","description":"总数"}],"example_online":{"request":"curl -X 'GET' 'https://datacenter.aminer.cn/gateway/open_platform/api/paper/search?page=1\u0026size=10\u0026title=Looking+at+CTR+Prediction+Again%3A+Is+Attention+All+You+Need' -H 'Authorization: 替换为从控制台中获取或你生成的token'","response":"{\"code\":200,\"success\":true,\"msg\":\"\",\"data\":[{\"doi\":\"10.1145/3404835.3462936\",\"id\":\"609d015e91e01118a99b93b7\",\"title\":\"Looking at CTR Prediction Again: is Attention All You Need?\"}],\"total\":1,\"log_id\":\"35h1bPeNpKDAo6v8s1Udswf04o0\"}"},"history_urls":["https://datacenter.aminer.cn/gateway/open_platform/api/v3/paper/list/by/publish"]}} \ No newline at end of file diff --git a/.setup/plugins/aminer/64f050189ceb91ca8b8b8159.json b/.setup/plugins/aminer/64f050189ceb91ca8b8b8159.json deleted file mode 100644 index f7d83271..00000000 --- a/.setup/plugins/aminer/64f050189ceb91ca8b8b8159.json +++ /dev/null @@ -1 +0,0 @@ -{"success":true,"code":200,"msg":"","data":{"id":"64f050189ceb91ca8b8b8159","description":"根据机构字符串获取机构标准名称","price":0.01,"title":"机构消歧","method":"post","url_online":"https://datacenter.aminer.cn/gateway/open_platform/api/organization/na","update_time":"2025-01-24T09:57:25.484946Z","header":[{"name":"Content-Type","value":"application/json;charset=utf-8"},{"name":"Authorization","value":"Token"}],"param":[{"name":"org","type":"string","required":true,"maximum":null,"description":"机构名称","example":"北京大学"}],"response_fields":[{"name":"code","type":"int","description":"接口返回的状态码"},{"name":"message","type":"string","description":"接口状态描述"},{"name":"org_name","type":"string","description":"机构归一化名称 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-{"success":true,"code":200,"msg":"","data":{"id":"650bfda4a35ad00c78dbb65e","description":"根据专利ID获取专利摘要、申请日期、申请号、申请人、受让人、国家、发明人、优先权号、公开日期等等","price":0.01,"title":"专利详情","method":"get","url_online":"https://datacenter.aminer.cn/gateway/open_platform/api/patent/detail","update_time":"2023-10-13T10:01:04.622185Z","header":[{"name":"Authorization","value":"Token"}],"param":[{"name":"id","type":"string","required":true,"maximum":null,"description":"id","example":"63372c2b667297566c7a3b83"}],"response_fields":[{"name":"abstract","type":"object","description":"摘要"},{"name":"app_date","type":"object","description":"申请日"},{"name":"app_num","type":"string","description":"申请号"},{"name":"assignee","type":"array","description":"受让人"},{"name":"country","type":"string","description":"国别"},{"name":"cpc","type":"array","description":"cpc分类号"},{"name":"description","type":"string","description":"说明书"},{"name":"id","type":"string","description":"专利id"},{"name":"inventor","type":"array","description":"发明人"},{"name":"ipc","type":"array","description":"ipc分类号"},{"name":"ipcr","type":"array","description":"ipcr分类号"},{"name":"priority","type":"array","description":"优先权信息"},{"name":"pub_date","type":"object","description":"公开日"},{"name":"pub_kind","type":"string","description":"公开类型"},{"name":"pub_num","type":"string","description":"公开号"},{"name":"title","type":"object","description":"标题"}],"example_online":{"request":"curl 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deleted file mode 100644 index cd5e85b2..00000000 --- a/.setup/plugins/aminer/652252e007bac596e60d91da.json +++ /dev/null @@ -1 +0,0 @@ -{"success":true,"code":200,"msg":"","data":{"id":"652252e007bac596e60d91da","description":"根据学者ID获取学者的论文ID、论文标题","price":1.5,"title":"学者论文","method":"get","url_online":"https://datacenter.aminer.cn/gateway/open_platform/api/person/paper/relation","update_time":"2025-10-24T04:29:13.214321Z","header":[{"name":"Authorization","value":"Token"}],"param":[{"name":"id","type":"string","required":true,"maximum":null,"description":"作者id","example":"561d4fe545ce1e59647b49c6"}],"response_fields":[{"name":"author_id","type":"string","description":"学者的id"},{"name":"id","type":"string","description":"id"},{"name":"title","type":"string","description":"标题"}],"example_online":{"request":"curl -X 'GET' 'https://datacenter.aminer.cn/gateway/open_platform/api/person/paper/relation?id=561d4fe545ce1e59647b49c6' -H 'Authorization: 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In applications of practical interest, both of these problems are encountered, and standard methods either fail or are not feasible. To overcome the current limitations, we present a generalized formulation of a Bayesian multi-fidelity Monte-Carlo (BMFMC) framework that can exploit lower-fidelity model versions in a small data regime. The goal of our analysis is an efficient and accurate estimation of the complete probabilistic response for high-fidelity models. BMFMC circumvents the curse of dimensionality by learning the relationship between the outputs of a reference high-fidelity model and potentially several lower-fidelity models. While the continuous formulation is mathematically exact and independent of the low-fidelity model's accuracy, we address challenges associated with the small data regime (i.e., only a small number of 50 to 300 high-fidelity model runs can be performed). Specifically, we complement the formulation with a set of informative input features at no extra cost. Despite the inaccurate and noisy information that some low-fidelity models provide, we demonstrate that accurate and certifiable estimates for the quantities of interest can be obtained for uncertainty quantification problems in high stochastic dimensions, with significantly fewer high-fidelity model runs than state-of-the-art methods for uncertainty quantification. We illustrate our approach by applying it to challenging numerical examples such as Navier-Stokes flow simulations and fluid-structure interaction problems.\",\"authors\":[{\"_id\":\"6403642a7691d561fb16999d\",\"name\":\"Jonas Nitzler\",\"org\":\"Tech Univ Munich, Inst Computat Mech, D-85748 Munich, Germany\"},{\"_id\":\"561d2eca45ce1e596477cf60\",\"name\":\"Jonas Biehler\",\"org\":\"Tech Univ Munich, Inst Computat Mech, D-85748 Munich, Germany\"},{\"_id\":\"62e4a4f2d9f204418d6cda13\",\"name\":\"Niklas Fehn\",\"org\":\"Tech Univ Munich, Inst Computat Mech, D-85748 Munich, Germany\"},{\"_id\":\"618cb1936750f86b3756de0e\",\"name\":\"Phaedon-Stelios Koutsourelakis\",\"org\":\"Tech Univ Munich, Professorship Data Driven Mat Modeling, D-85748 Munich, Germany\"},{\"_id\":\"5405e4a9dabfae450f3dec38\",\"name\":\"Wolfgang A. Wall\",\"org\":\"Tech Univ Munich, Inst Computat Mech, D-85748 Munich, Germany\"}],\"doi\":\"10.1016/j.cma.2022.115600\",\"issn\":\"0045-7825\",\"keywords\":[\"Uncertainty quantification\",\"Probabilistic learning\",\"Bayes\",\"Multi -fidelity\",\"Fluid-structure interaction\",\"Small data\"],\"title\":\"A Generalized Probabilistic Learning Approach for Multi-Fidelity Uncertainty Propagation in Complex Physical Simulations.\",\"venue\":{\"raw\":\"Computer Methods in Applied Mechanics and Engineering\"},\"volume\":\"400\",\"year\":2022},{\"_id\":\"5fd0acf491e01147f1d1e3cf\",\"abstract\":\"Numerical investigation of compressible flows faces two main challenges. In order to accurately describe the flow characteristics, high-resolution nonlinear numerical schemes are needed to capture discontinuities and resolve wide convective, acoustic and interfacial scale ranges. The simulation of realistic 3D problems with state-of-the-art FVM based on approximate Riemann solvers with weighted nonlinear reconstruction schemes requires the usage of HPC architectures. Efficient compression algorithms reduce computational and memory load. Fully adaptive MR algorithms with LTS have proven their potential for such applications. While modern CPU require multiple levels of parallelism to achieve peak performance, the fine grained MR mesh adaptivity results in challenging compute/communication patterns. Moreover, LTS incur for strong data dependencies which challenge a parallelization strategy. We address these challenges with a block-based MR algorithm, where arbitrary cuts in the underlying octree are possible. This allows for a parallelization on distributed-memory machines via the MPI. We obtain neighbor relations by a simple bit-logic in a modified Morton Order. The block-based concept allows for a modular setup of the source code framework in which the building blocks of the algorithm, such as the choice of the Riemann solver or the reconstruction stencil, are interchangeable without loss of parallel performance. We present the capabilities of the modular framework with a range of test cases and scaling analysis with effective resolutions beyond one billion cells using $\\\\mathcal{O}(10^3)$ cores.\",\"authors\":[{\"_id\":\"6328754330241ae3e5a9cf0b\",\"name\":\"Nils Hoppe\",\"org\":\"Chair Aerodynam \\u0026 Fluid Mech, Boltzmannstr 15, D-85748 Garching, Germany\"},{\"_id\":\"5609485345cedb3396e7ef8f\",\"name\":\"Stefan Adami\",\"org\":\"Chair Aerodynam \\u0026 Fluid Mech, Boltzmannstr 15, D-85748 Garching, Germany\"},{\"_id\":\"53f432badabfaee0d9b40642\",\"name\":\"Nikolaus A. Adams\",\"org\":\"Chair Aerodynam \\u0026 Fluid Mech, Boltzmannstr 15, D-85748 Garching, Germany\"}],\"doi\":\"10.1016/j.cma.2021.114486\",\"issn\":\"0045-7825\",\"keywords\":[\"Multiresolution\",\"Compressible flows\",\"High-order methods\",\"HPC\",\"Distributed-memory parallelization\"],\"title\":\"A Parallel Modular Computing Environment for Three-Dimensional Multiresolution Simulations of Compressible Flows\",\"venue\":{\"raw\":\"Computer Methods in Applied Mechanics and Engineering\"},\"volume\":\"391\",\"year\":2022},{\"_id\":\"5fd8b6bd91e0119b22c1f461\",\"abstract\":\"We present a scalable block preconditioning strategy for the trace system arising from the high-order hybridized discontinuous Galerkin (HDG) discretization of incompressible resistive magnetohydrodynamics (MHD). We construct the block preconditioner with a least squares commutator (BFBT) approximation for the inverse of the Schur complement that segregates out the pressure unknowns of the trace system. The remaining velocity, magnetic field, and Lagrange multiplier unknowns form a coupled nodal unknown block for which a system algebraic multigrid (AMG) is used to approximate the inverse. The complexity of the MHD equations together with the algebraic nature of the statically condensed HDG trace system makes the choice of smoother in the system AMG part critical for the convergence and performance of the block preconditioner. Our numerical experiments show GMRES preconditioned by ILU(0) of overlap zero as a smoother inside system AMG performs best in terms of robustness, time per nonlinear iteration and memory requirements. With several transient test cases in 2D and 3D including the island coalescence problem at high Lundquist number we demonstrate the robustness and parallel scalability of the block preconditioner. Additionally for the upper block a preliminary study of an alternate nodal block system solver based on a multilevel approximate nested dissection is presented. On a 2D island coalescence problem the multilevel approximate nested dissection preconditioner shows better scalability with respect to mesh refinement than the system AMG, but is relatively less robust with respect to Lundquist number scaling. In the Appendix B, we rigorously show: (1) the uniqueness of the solution of the nonlinear MHD system for small time, (2) the convergence of the Picard iterations for each backward Euler step, and (3) the convergence of the entire time stepping procedure.\",\"authors\":[{\"_id\":\"63af8b4a84ab04bd7fb6b55c\",\"name\":\"Sriramkrishnan Muralikrishnan\",\"org\":\"Forschungszentrum Julich, Julich Supercomp Ctr, D-52425 Julich, Germany\"},{\"_id\":\"657ebd778a47b66aaee3264c\",\"name\":\"Stephen Shannon\",\"org\":\"Univ Texas Austin, Oden Inst Computat Engn \\u0026 Sci, Austin, TX 78712 USA\"},{\"_id\":\"63db753071b5cf7db926f338\",\"name\":\"Tan Bui-Thanh\",\"org\":\"Univ Texas Austin, Dept Aerosp Engn \\u0026 Engn Mech, Austin, TX 78712 USA\"},{\"_id\":\"53f455f9dabfaefedbb4f145\",\"name\":\"John N. Shadid\",\"org\":\"Sandia Natl Labs, Computat Math Dept, POB 5800,MS 1321, Albuquerque, NM 87185 USA\"}],\"doi\":\"10.1016/j.cma.2022.115775\",\"issn\":\"0045-7825\",\"keywords\":[\"Block preconditioners\",\"HDG\",\"High -order\",\"MHD\",\"AMG\",\"Multilevel\"],\"title\":\"A Multilevel Block Preconditioner for the HDG Trace System Applied to Incompressible Resistive MHD\",\"venue\":{\"raw\":\"Computer Methods in Applied Mechanics and Engineering\"},\"volume\":\"404\",\"year\":2022},{\"_id\":\"5ff6853dd4150a363cc04985\",\"abstract\":\"This paper proposes a novel topology optimization procedure for designing structures with infill-supported enclosed voids for additive manufacturing (AM). In such structures, the open and enclosed regions are separately treated, where the open regions are the standard voids but the enclosed ones are filled by porous materials. The applied porous infill can work as supports in the AM process, but at the same time be part of the final structures and will never be removed. In this way, the difficulty of removing the supports in enclosed voids can be naturally avoided. However, whether the enclosed voids should be removed or kept if the porous material must be filled inside becomes a challenging problem, and thus this work develops a rational procedure to automatically determine it, and optimize the layout of these kept enclosed voids with infill. In the proposed procedure, a nonlinear virtual temperature (N-VTM) filter is utilized to separate the enclosed voids and open regions. Then, by combining the N-VTM filter, PDE filter and projection, a novel interpolation for structures with infill-supported enclosed voids is proposed, which at the same time can be used to provide structures without enclosed voids. The robust topology optimization formulation is applied to enhance the performance of the proposed procedure, and the sensitivity equations are deduced based on the adjoint method. Several numerical and experimental examples in two and three dimensions illustrate the effectiveness of the procedure. The results show that the procedure is capable of automatically determining whether to directly eliminate an enclosed void or to use infill to support it.\",\"authors\":[{\"_id\":\"542a16cadabfaec7081dceb7\",\"name\":\"Yunfeng Luo\",\"org\":\"Dalian Univ Technol, State Key Lab Struct Anal Ind Equipment, Dalian 116024, Peoples R China\"},{\"_id\":\"54489089dabfae87b7e4465a\",\"name\":\"Ole Sigmund\",\"org\":\"Tech Univ Denmark, Dept Mech Engn Solid Mech, DK-2800 Lyngby, Denmark\"},{\"_id\":\"560a78bf45ce1e595fcdc4c7\",\"name\":\"Quhao Li\",\"org\":\"Shandong Univ, Minist Educ, Key Lab High Efficiency \\u0026 Clean Mech Manufacture, Jinan 250061, Peoples R China\"},{\"_id\":\"560aa4b045cedb339715d60d\",\"name\":\"Shutian Liu\",\"org\":\"Dalian Univ Technol, State Key Lab Struct Anal Ind Equipment, Dalian 116024, Peoples R China\"}],\"doi\":\"10.1016/j.addma.2022.102795\",\"issn\":\"2214-7810\",\"keywords\":[\"Topology optimization\",\"Additive manufacturing\",\"Infill\",\"Enclosed voids\"],\"title\":\"Topology Optimization of Structures with Infill-Supported Enclosed Voids for Additive Manufacturing\",\"venue\":{\"raw\":\"Additive manufacturing\"},\"volume\":\"55\",\"year\":2022},{\"_id\":\"601130c891e0117654c5fdb0\",\"abstract\":\"Mild Traumatic Brain Injuries (mTBI) are caused by violent head motions or impacts. Most mTBI prevention strategies explicitly or implicitly rely on a \\\"brain injury criterion\\\". A brain injury criterion takes some descriptor of the head's motion as input and yields a prediction for that motion's potential for causing mTBI as the output. The inputs are descriptors of the head's motion that are usually synthesized from accelerometer and gyroscope data. In the context of brain injury criterion the head is modeled as a rigid body. We present an algorithm for determining the complete motion of the head using data from only four head mounted tri-axial accelerometers. In contrast to inertial measurement unit based algorithms for determining rigid body motion the presented algorithm does not depend on data from gyroscopes; which consume much more power than accelerometers. Several algorithms that also make use of data from only accelerometers already exist. However, those algorithms, except for the recently presented AO-algorithm [Rahaman MM, Fang W, Fawzi AL, Wan Y, Kesari H (2020): J Mech Phys Solids 104014], give the rigid body's acceleration field in terms of the body frame, which in general is unknown. Compared to the AO-algorithm the presented algorithm is much more insensitive to bias type errors, such as those that arise from inaccurate measurement of sensor positions and orientations.\",\"authors\":[{\"_id\":\"632490cfc03fbd5be1f95c03\",\"name\":\"Yang Wan\",\"org\":\"Brown Univ, Sch Engn, 184 Hope St, Providence, RI 02912 USA\"},{\"_id\":\"65d1bc638a47b621f76fc516\",\"name\":\"Alice Lux Fawzi\",\"org\":\"Brown Univ, Sch Engn, 184 Hope St, Providence, RI 02912 USA\"},{\"_id\":\"53f4401adabfaee1c0adac78\",\"name\":\"Haneesh Kesari\",\"org\":\"Brown Univ, Sch Engn, 184 Hope St, Providence, RI 02912 USA\"}],\"doi\":\"10.1016/j.cma.2021.114271\",\"issn\":\"0045-7825\",\"keywords\":[\"mTBI\",\"Tensor square root\",\"Rigid body motion\",\"Accelerometers\",\"Inertial navigation\",\"Continuum mechanics\"],\"title\":\"Determining Rigid Body Motion from Accelerometer Data Through the Square-Root of a Negative Semi-Definite Tensor, with Applications in Mild Traumatic Brain Injury\",\"venue\":{\"raw\":\"Computer Methods in Applied Mechanics and Engineering\"},\"volume\":\"390\",\"year\":2022},{\"_id\":\"6034f37d91e01122c046f9a3\",\"abstract\":\"We consider an input-to-response (ItR) system characterized by (1) parameterized input with a known probability distribution and (2) stochastic ItR function with heteroscedastic randomness. Our purpose is to efficiently quantify the extreme response probability when the ItR function is expensive to evaluate. The problem setup arises often in physics and engineering problems, with randomness in ItR coming from either intrinsic uncertainties (say, as a solution to a stochastic equation) or additional (critical) uncertainties that are not incorporated in a low-dimensional input parameter space (as a result of dimension reduction applied to the original high-dimensional input space). To reduce the required sampling numbers, we develop a sequential Bayesian experimental design method leveraging the variational heteroscedastic Gaussian process regression (VHGPR) to account for the stochastic ItR, along with a new criterion to select the next-best samples sequentially. The validity of our new method is first tested in two synthetic problems with the stochastic ItR functions defined artificially. Finally, we demonstrate the application of our method to an engineering problem of estimating the extreme ship motion probability in irregular waves, where the uncertainty in ItR naturally originates from standard wave group parameterization, which reduces the original high-dimensional wave field into a two-dimensional parameter space.\",\"authors\":[{\"_id\":\"64972320a88fbe7c05ff2a80\",\"name\":\"Xianliang Gong\",\"org\":\"Univ Michigan, Dept Naval Architecture \\u0026 Marine Engn, Ann Arbor, MI 48109 USA\"},{\"_id\":\"615581e59e795e604ab3a72e\",\"name\":\"Yulin Pan\",\"org\":\"Univ Michigan, Dept Naval Architecture \\u0026 Marine Engn, Ann Arbor, MI 48109 USA\"}],\"doi\":\"10.1016/j.cma.2022.114979\",\"issn\":\"0045-7825\",\"keywords\":[\"Extreme events\",\"Bayesian experimental design\",\"Stochastic systems\"],\"title\":\"Sequential Bayesian Experimental Design for Estimation of Extreme-Event Probability in Stochastic Input-to-response Systems\",\"venue\":{\"raw\":\"Computer Methods in Applied Mechanics and Engineering\"},\"volume\":\"395\",\"year\":2022},{\"_id\":\"6040baee91e011a0653f0814\",\"abstract\":\"Variable-density cellular structures can overcome connectivity and manufacturability issues of topologically optimized structures, particularly those represented as discrete density maps. However, the optimization of such cellular structures is challenging due to the multiscale design problem. Past work addressing this problem generally either only optimizes the volume fraction of single-type unit cells but ignoring the effects of unit cell geometry on properties, or considers the geometry-property relation but builds this relation via heuristics. In contrast, we propose a simple yet more principled way to accurately model the property to geometry mapping using a conditional deep generative model, named Inverse Homogenization Generative Adversarial Network (IH-GAN). It learns the conditional distribution of unit cell geometries given properties and can realize the one-to-many mapping from properties to geometries. We further reduce the complexity of IH-GAN by using the implicit function parameterization to represent unit cell geometries. Results show that our method can 1) generate various unit cells that satisfy given material properties with high accuracy (R2-scores between target properties and properties of generated unit cells \\u003e 98%) and 2) improve the optimized structural performance over the conventional variable-density single-type structure. In the minimum compliance example, our IH-GAN generated structure achieves a 79.7% reduction in concentrated stress and an extra 3.03% reduction in displacement. In the target deformation examples, our IH-GAN generated structure reduces the target matching error by 86.4% and 79.6% for two test cases, respectively. We also demonstrated that the connectivity issue for multi-type unit cells can be solved by transition layer blending. (c) 2022 Elsevier B.V. All rights reserved.\",\"authors\":[{\"_id\":\"56183d5645ce1e5963fb84e1\",\"name\":\"Jun Wang\",\"org\":\"Univ Maryland, Dept Mech Engn, College Pk, MD 20742 USA\"},{\"name\":\"Wei (Wayne) Chen\",\"org\":\"Northwestern Univ, Dept Mech Engn, Evanston, IL 60208 USA\"},{\"name\":\"Daicong Da\",\"org\":\"Northwestern Univ, Dept Mech Engn, Evanston, IL 60208 USA\"},{\"_id\":\"53f45084dabfaeecd69d4b63\",\"name\":\"Mark Fuge\",\"org\":\"Univ Maryland, Dept Mech Engn, College Pk, MD 20742 USA\"},{\"_id\":\"53f42c30dabfaeb22f3f629b\",\"name\":\"Rahul Rai\",\"org\":\"Clemson Univ, Int Ctr Automot Res, Greenville, SC 29607 USA\"}],\"doi\":\"10.1016/j.cma.2022.115060\",\"issn\":\"0045-7825\",\"keywords\":[\"Inverse design\",\"Cellular structure design\",\"Homogenization\",\"Generative adversarial network\",\"Topology optimization\"],\"title\":\"IH-GAN: A Conditional Generative Model for Implicit Surface-Based Inverse Design of Cellular Structures\",\"venue\":{\"raw\":\"Computer Methods in Applied Mechanics and Engineering\"},\"volume\":\"396\",\"year\":2022},{\"_id\":\"6049e19191e01118b758efb8\",\"abstract\":\"Analysis-suitable T-splines (AST-splines) are a promising candidate to achieve a seamless integration between the design and the analysis of thin-walled structures in industrial settings. In this work, we allow multiple extraordinary points per face, i.e., we remove the restriction of preceding works that required extraordinary points to be at least four rings apart from each other. We do so by mathematically showing that AST-splines with multiple extraordinary points per face are linearly independent and their polynomial basis functions form a non-negative partition of unity. This extension of the subset of AST-splines drastically increases the flexibility to build geometries using AST-splines; e.g., much coarser meshes can be constructed around small holes. The AST-spline spaces detailed in this work have C1 inter-element continuity near extraordinary points and C2 inter-element continuity elsewhere. For the convergence studies performed in this paper involving second- and fourth-order linear elliptic problems with manufactured solutions, we have not found any drawback caused by allowing multiple EPs per face in either the first refinement levels or the asymptotic behavior. To illustrate a possible isogeometric framework that is already available, we design the B-pillar and the side outer panel of a car using T-splines with the commercial software Autodesk Fusion360, import the control nets into our in-house code to build AST-splines, and import the Bézier extraction information into the commercial software LS-DYNA to solve eigenvalue problems. The results are compared with conventional finite elements and good agreement is found between AST-splines and conventional finite elements.\",\"authors\":[{\"_id\":\"62e48f3dd9f204418d6adecb\",\"name\":\"Xiaodong Wei\",\"org\":\"Ecole Polytech Fed Lausanne, Inst Math, CH-1015 Lausanne, Switzerland\"},{\"_id\":\"542be99fdabfae2b4e1b6ed3\",\"name\":\"Xin Li\",\"org\":\"USTC, Sch Math Sci, Hefei, Peoples R China\"},{\"_id\":\"617bbf9060a9653685eebbf3\",\"name\":\"Kuanren Qian\",\"org\":\"Carnegie Mellon Univ, Dept Mech Engn, Pittsburgh, PA 15213 USA\"},{\"_id\":\"53f430ebdabfaeb1a7bb80a6\",\"name\":\"Thomas J. R. Hughes\",\"org\":\"Oden Inst Computat Engn \\u0026 Sci, 201 East 24th St, C0200, Austin, TX 78712 USA\"},{\"_id\":\"562ce9a545cedb3398cfdafb\",\"name\":\"Yongjie Jessica Zhang\",\"org\":\"Carnegie Mellon Univ, Dept Mech Engn, Pittsburgh, PA 15213 USA\"},{\"_id\":\"62e48f3dd9f204418d6adedc\",\"name\":\"Hugo Casquero\",\"org\":\"Univ Michigan Dearborn, Dept Mech Engn, 4901 Evergreen Rd, Dearborn, MI 48128 USA\"}],\"doi\":\"10.1016/j.cma.2021.114494\",\"issn\":\"0045-7825\",\"keywords\":[\"Isogeometric analysis\",\"Analysis-suitable T-splines\",\"Extraordinary points\",\"Linear independence\",\"Optimal convergence\",\"Automotive engineering\"],\"title\":\"Analysis-suitable Unstructured T-splines: Multiple Extraordinary Points Per Face\",\"venue\":{\"raw\":\"Computer Methods in Applied Mechanics and Engineering\"},\"volume\":\"391\",\"year\":2022},{\"_id\":\"605b111c91e0119ebe7e5c66\",\"abstract\":\"A single-step high-order implicit time integration scheme for the solution of transient and wave propagation problems is presented. It is constructed from the Padé expansions of the matrix exponential solution of a system of first-order ordinary differential equations formulated in the state-space. A computationally efficient scheme is developed exploiting the techniques of polynomial factorization and partial fractions of rational functions, and by decoupling the solution for the displacement and velocity vectors. An important feature of the novel algorithm is that no direct inversion of the mass matrix is required. From the diagonal Padé expansion of order M a time-stepping scheme of order 2M is developed. Here, each elevation of the accuracy by two orders results in an additional system of real or complex sparse equations to be solved. These systems are comparable in complexity to the standard Newmark method, i.e., the effective system matrix is a linear combination of the static stiffness, damping, and mass matrices. It is shown that the second-order scheme is equivalent to Newmark's constant average acceleration method, often also referred to as trapezoidal rule. The proposed time integrator has been implemented in MATLAB using the built-in direct linear equation solvers. In this article, numerical examples featuring nearly one million degrees of freedom are presented. High-accuracy and efficiency in comparison with common second-order time integration schemes are observed. The MATLAB-implementation is available from the authors upon request or from the GitHub repository (to be added).\",\"authors\":[{\"_id\":\"53f43190dabfaee1c0a69d23\",\"name\":\"Chongmin Song\",\"org\":\"Univ New South Wales, Ctr Infrastruct Engn \\u0026 Safety, Sch Civil \\u0026 Environm Engn, Sydney, NSW 2052, Australia\"},{\"_id\":\"612c7dd19e795e3e42c658ee\",\"name\":\"Sascha Eisentrager\",\"org\":\"Univ New South Wales, Ctr Infrastruct Engn \\u0026 Safety, Sch Civil \\u0026 Environm Engn, Sydney, NSW 2052, Australia\"},{\"_id\":\"65d454b8c136ef13316634e2\",\"name\":\"Xiaoran Zhang\"}],\"doi\":\"10.1016/j.cma.2021.114436\",\"issn\":\"0045-7825\",\"keywords\":[\"Implicit time integration methods\",\"High-order accuracy\",\"Pade series\",\"Unconditional stability\",\"Long duration analysis\"],\"title\":\"High-order Implicit Time Integration Scheme Based on Padé Expansions\",\"venue\":{\"raw\":\"Computer Methods in Applied Mechanics and 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Integration\",\"title_zh\":\"人工智能在冠心病临床诊疗中的应用与挑战:从影像学分析到多组学联合\",\"year\":2025},{\"abstract_zh\":\"聚合物为人类社会生活发展提供了不可或缺的物质基础.在研发聚合物材料的过程中,庞大的结构空间、复杂的聚合机制为建立聚合物材料的构效关系带来重大挑战.机器学习有望突破高分子合成研究的传统范式,推进新型聚合物材料的化学创制,近年来成为了高分子化学家关注的前沿领域.机器学习技术实现了反应条件、化学结构、材料性能之间潜在关联的发掘,提高了对聚合反应空间的研究效率,为反应条件优化、链结构设计提供了系统性指导.数据驱动的生物大分子结构解析是多领域关注的焦点,机器学习助力实现了蛋白质结构预测的跨越式进步,迈入了生物大分子研究的新阶段.在此基础上,结合自动化技术,发展数智化合成,进一步降低试错成本,加速聚合物材料研发,推动理论知识发展.本文对机器学习在预测聚合物性能、设计聚合物结构与合成条件、生物大分子研究中取得的重要进展进行简要介绍与讨论.目前,机器学习辅助的高分子合成研究仍面临聚合物结构表示方法有限、高质量数据稀缺、自动化技术落地合成生产困难等挑战,亟须加大研究投入,深入开展跨学科研究,发展人工智能赋能的高分子合成,推动高端材料创新.\",\"doi\":\"10.1360/tb-2024-0800\",\"id\":\"66f6691801d2a3fbfc9be454\",\"keywords\":null,\"keywords_zh\":[\"高分子合成\",\"机器学习\",\"人工智能\",\"聚合物\",\"生物大分子\"],\"title_zh\":\"机器学习辅助高分子合成研究进展\",\"year\":2025},{\"abstract\":\"Gastric cancer is a common tumor in China, and lymph node metastasis (LNM) is an independent prognostic factor for it. Accurately determining the risk of LNM in gastric cancer can help to formulate the treatment plan and estimate its staging and prognosis preoperatively. Existing means for evaluating LNM in gastric cancer have shortcomings such as low accuracy and high subjectivity. In recent years, artificial intelligence (AI) has begun to be used in medical research and clinical fields, which is of great significance in the era of precise individualized medicine. Combined with multimodal data including clinical, imaging, pathomics and molecular information, AI can improve the accuracy of LNM diagnosis and assist clinical decision-making, which has made significant progress recently. The aim of this review is to provide an overview of the history and status of AI for LNM prediction in gastric cancer, and to discuss the challenges and development directions.\",\"abstract_zh\":\"胃癌是我国的常见肿瘤,淋巴结转移(LNM)是其独立预后因子。准确判断胃癌LNM风险,有助于在术前制定治疗方案、判断肿瘤分期与预后。现有的胃癌LNM评估手段存在准确率低、主观性强等不足。近年来,人工智能(AI)开始用于医学研究与临床领域,在精准个体化医疗时代具有重要意义。与临床、影像、病理组学与分子信息等多模态数据结合,AI能够提高胃癌LNM诊断的准确率并协助临床决策,近年来取得了重要进展。本综述旨在就AI用于胃癌LNM预测的历史与现状进行综述,并探讨其需要解决的挑战与发展方向。\",\"doi\":\"10.3760/cma.j.cn441530-20240510-00172\",\"id\":\"67b79996163c01c850cac35a\",\"keywords\":[\"Gastric neoplasms\",\"Lymph node metastasis\",\"Prediction model\",\"Artificial intelligence\",\"Machine learning\"],\"keywords_zh\":[\"胃肿瘤\",\"淋巴结转移\",\"预测模型\",\"人工智能\",\"机器学习\"],\"title\":\"[Artificial Intelligence for Lymph Node Metastasis Prediction in Gastric Cancer: Research Progress].\",\"title_zh\":\"人工智能用于胃癌淋巴结转移预测的研究进展\",\"year\":2025}],\"total\":1235,\"log_id\":\"2zGhGd9YaL67qUZeBjoop6JZiLa\"}"},"history_urls":["https://datacenter.aminer.cn/gateway/open_platform/api/v3/paper/list/citation/by/keywords"]}} \ No newline at end of file diff --git a/.setup/plugins/aminer/6673a6228e9e5687485aac1e.json b/.setup/plugins/aminer/6673a6228e9e5687485aac1e.json deleted file mode 100644 index b39dff77..00000000 --- a/.setup/plugins/aminer/6673a6228e9e5687485aac1e.json +++ /dev/null @@ -1 +0,0 @@ -{"success":true,"code":200,"msg":"","data":{"id":"6673a6228e9e5687485aac1e","description":"通过关键词或作者或期刊名称获取论文作者机构期刊等信息","price":0.3,"title":"论文搜索接口","method":"get","url_online":"https://datacenter.aminer.cn/gateway/open_platform/api/paper/list/by/search/venue","update_time":"2025-07-01T09:47:51.281095Z","header":[{"name":"Authorization","value":"Token"}],"param":[{"name":"keyword","type":"string","required":false,"maximum":null,"description":"关键词(期刊、关键词、作者 三者选其一)","example":"中国"},{"name":"page","type":"number","required":true,"maximum":null,"description":"页码数","example":"5"},{"name":"size","type":"number","required":true,"maximum":10,"description":"条数","example":"10"},{"name":"venue","type":"string","required":false,"maximum":null,"description":"期刊名称(期刊、关键词、作者 三者选其一)","example":null},{"name":"author","type":"string","required":false,"maximum":null,"description":"作者名称(期刊、关键词、作者 三者选其一)","example":null},{"name":"order","type":"string","required":false,"maximum":null,"description":"不传为综合排序 可传year, n_citation","example":"n_citation"}],"response_fields":[{"name":"_id","type":"string","description":"论文id"},{"name":"abstract","type":"string","description":"论文摘要"},{"name":"abstract_zh","type":"string","description":"论文中文摘要"},{"name":"alias","type":"array","description":"别名"},{"name":"authors","type":"array","description":"作者信息:作者名称、作者中文名、 作者id 、作者所属机构、机构id、机构别名、机构详情、机构简称"},{"name":"doi","type":"string","description":"论文doi"},{"name":"id","type":"string","description":"id"},{"name":"introduction","type":"string","description":"简介"},{"name":"keywords","type":"array","description":"论文关键词"},{"name":"keywords_zh","type":"array","description":"论文中文关键词"},{"name":"language","type":"string","description":"语言"},{"name":"n_citation","type":"int","description":"引用量"},{"name":"name","type":"string","description":"姓名"},{"name":"name_en","type":"string","description":"机构英文名称"},{"name":"name_zh","type":"string","description":"中文名"},{"name":"title","type":"string","description":"论文标题"},{"name":"title_zh","type":"string","description":"论文中文标题"},{"name":"total","type":"float","description":"总数"},{"name":"url","type":"string","description":"论文跳转地址"},{"name":"venue","type":"object","description":"期刊信息: 期刊中文名、 期刊英文名 、期刊别名"},{"name":"venue_hhb_id","type":"string","description":"期刊id"},{"name":"year","type":"int","description":"论文发布时间"}],"example_online":{"request":"curl -X 'GET' 'https://datacenter.aminer.cn/gateway/open_platform/api/paper/list/by/search/venue?keyword=%E4%B8%AD%E5%9B%BD\u0026order=n_citation\u0026page=5\u0026size=10' -H 'Authorization: 替换为从控制台中获取或你生成的token'","response":"{\"code\":200,\"success\":true,\"msg\":\"\",\"data\":[{\"abstract\":\"Ecological regionalization is a base for rational management and sustainable utilization of ecosystems and natural resources. It can provide scientific basis for constructing healthy ecological environments and making policies of environmental management. In this paper, based on synthetical analysis of the characteristics of ecological environments of China, the principles of ecological regionalization are discussed, and indices and nomenclature of ecological regionalization are proposed, The ecoregions in national scale are divided. The results show that there are 3 domains, 13 ecoregions and 57 ecodistricts.\",\"abstract_zh\":\"生态区划是生态系统和自然资源合理管理及持续利用的基础,它可为生态环境建设和环境管理政策的制订提供科学依据。在综合分析我国生态环境特点的基础上,探讨了生态区划的原则和依据,建立了各级生态区单元划分的指标体系和命名系统,最后对我国生态环境进行了区域划分。将我国划分为3个生态大区、13个生态地区和57个生态区。\",\"authors\":[{\"_id\":\"64f012a4559445a0412a8800\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name\":\"FU Bo-Jie\",\"name_zh\":\"傅伯杰\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"56cb18b2c35f4f3c6565c6bf\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese 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Li-Ding\",\"name_zh\":\"陈利顶\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"56cb18a4c35f4f3c6565891d\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name\":\"MA Ke-ming\",\"name_zh\":\"马克明\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"56170cb345cedb3397bb2a13\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name\":\"LI Jun-ran\",\"name_zh\":\"李俊然\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"}],\"doi\":\"10.3321/j.issn:1000-0933.2001.01.001\",\"id\":\"600d1edeb42d2a8a0a831473\",\"keywords\":null,\"keywords_zh\":[\"生态环境\",\"生态区划\",\"原则\",\"指标体系\",\"分类系统\",\"中国\"],\"n_citation\":321,\"title\":\"Scheme of ecological regionalization in China\",\"title_zh\":\"中国生态区划方案\",\"url\":\"https://www.aminer.cn/pub/600d1edeb42d2a8a0a831473\",\"venue\":{\"alias\":[\"Acta Ecologica Sinica\",\"acta ecologica sinica\",\"生态学报\",\"ACTA ECOLOGICA SINICA\",\"Sheng tai xue bao = Acta ecologica Sinica\"],\"name_en\":\"Acta Ecologica Sinica\",\"name_zh\":\"生态学报\"},\"venue_hhb_id\":\"5eaa537eedb6e7d53c061b71\",\"year\":2001},{\"abstract_zh\":\"以2004年之后的Landsat TM/ETM+和ASTER遥感影像为基础,参考第一次中国冰川目录及其他文献资料,经过影像校正、自动解译、野外考察、人工修订、交互检查和成果审定等技术环节,完成占全国冰川总面积85.5%的现状冰川编目,确定中国目前共有冰川48571条,总面积约5.18×104 km2,约占全国国土面积的0.54%,冰川储量约4.3~4.7×103km3.中国冰川数量和面积分别以面积<0.5 km2的冰川和面积介于1.0~50.0 km2的冰川为主,面积最大的冰川是音苏盖提冰川(359.05 km2).中国西部14座山系(高原)均有冰川分布,其中昆仑山冰川数量最多,其次是天山、念青唐古拉山、喜马拉雅山和喀喇昆仑山,这5座山系冰川数量占全国冰川总数量的72.3%;冰川面积和冰储量位列前3位的山系分别为昆仑山、念青唐古拉山和天山,尽管喀喇昆仑山冰川数量和面积均小于喜马拉雅山,但前者冰储量高于后者.从冰川海拔分布来看,海拔4500~6500 m之间是冰川集中发育区域,约占全国冰川总面积的4/5以上.冰川资源在各流域分布差异显著,东亚内流区(5Y)是中国冰川分布数量最多、面积最大的一级流域,约占全国冰川总量的2/5以上;黄河流域(5J)是冰川数量最少、规模最小的一级流域,仅有冰川164条,面积126.72km2.新疆和西藏的冰川面积和冰储量约占全国冰川总面积的9/10.\",\"authors\":[{\"_id\":\"542cdbe9dabfae4bbcf7f32f\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name_zh\":\"吴立宗\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"64ccaaf2d6fcf4e735044bad\",\"aliases\":[\"Xīběi Shīfàn Dàxué\",\"xīběi shīfàn dàxué\",\"Northwest Normal University\",\"northwest normal university\",\"西北师范大学\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"西北师范大学\"}],\"name_zh\":\"姚晓军\",\"org_name\":\"Northwest Normal University\",\"orgid\":\"5f71b4601c455f439fe498bd\"},{\"_id\":\"53f4311fdabfaedf43545ec1\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name_zh\":\"郭万钦\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"53f4309edabfaedf4353f8d0\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name_zh\":\"上官冬辉\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"655c967633d15b6ea6a82caf\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of 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Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"53f434d2dabfaeecd695103f\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name_zh\":\"刘时银\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"5613e15745cedb3397a0452d\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name_zh\":\"鲍伟佳\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"}],\"doi\":\"10.11821/dlxb201501001\",\"id\":\"600d1eaeb42d2a8a0a827868\",\"keywords\":[\"glacier\",\" spatial distribution\",\" inventory\",\" area\",\" China\"],\"keywords_zh\":[\"冰川\",\"编目\",\"面积\",\"分布\",\"中国\"],\"n_citation\":321,\"title\":\"The contemporary glaciers in China based on the Second Chinese Glacier Inventory\",\"title_zh\":\"基于第二次冰川编目的中国冰川现状\",\"url\":\"https://www.aminer.cn/pub/600d1eaeb42d2a8a0a827868\",\"venue\":{\"alias\":[\"Acta Geographica Sinica\",\"地理学报\"],\"name_en\":\"Acta Geographica Sinica\",\"name_zh\":\"地理学报\"},\"venue_hhb_id\":\"5ea8c2a3edb6e7d53c05627b\",\"year\":2015},{\"abstract\":\"A high quality diet is believed to play a functional role in promoting the healthy growth of mankind and preventing many kinds of chronic degenerative diseases, including cancer, cardiovascular disease, diabetes, and obesity. Adherence to a high quality diet has been strongly associated with a lower risk of mortality. To help promote healthy lifestyles and physical strength, the Chinese government has produced a new revised version of the Dietary Guidelines for Chinese Residents (2016) and the Chinese Food Pagoda, as guidance for dietary intake among its population. Similarly, the Japanese government has produced the Japanese Food Guide Spinning Top Model, and the US government has recently published revised dietary recommendations in its 2015–2020 eighth edition of Dietary Guidelines for Americans. The evidence from all respective cohort studies involved in producing these guidelines shows a reduced risk of many chronic diseases and mortality if the guidelines are followed. All scientific findings support encouraging the general population to consume a broad variety of food on the basis of nutrient and food intakes in order to prevent deficiency diseases and a surplus of energy and nutrients, and recommend daily physical activity for health promotion.\",\"authors\":[{\"_id\":\"609a865e9e795ecb5b2f1631\",\"acronyms\":[\"ZJU\"],\"aliases\":[\"Chekiang University\",\"chekiang university\",\"Zheda\",\"zheda\",\"ZJU\",\"zju\",\"Zhejiang University\",\"zhejiang university\",\"浙江大学\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"浙江大学\"}],\"name\":\"Shan-shan Wang\",\"org_name\":\"Zhejiang University\",\"orgid\":\"5f71b29c1c455f439fe3d0e1\"},{\"_id\":\"637b2019f789b382bea5dd1e\",\"acronyms\":[\"ZJU\"],\"aliases\":[\"Chekiang University\",\"chekiang university\",\"Zheda\",\"zheda\",\"ZJU\",\"zju\",\"Zhejiang University\",\"zhejiang university\",\"浙江大学\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"浙江大学\"}],\"name\":\"Sovichea Lay\",\"org_name\":\"Zhejiang University\",\"orgid\":\"5f71b29c1c455f439fe3d0e1\"},{\"_id\":\"63dd69e68def4c1ab79e01c0\",\"acronyms\":[\"ZJUT\"],\"aliases\":[\"Zhèjiāng Gōngyè Dàxúe\",\"zhèjiāng gōngyè dàxúe\",\"ZJUT\",\"zjut\",\"Zhejiang University of Technology\",\"zhejiang university of technology\",\"浙江工业大学\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"浙江工业大学\"}],\"name\":\"Hai-ning Yu\",\"org_name\":\"Zhejiang University of Technology\",\"orgid\":\"5f71b3661c455f439fe429a6\"},{\"_id\":\"53f4374fdabfaedd74da8a24\",\"acronyms\":[\"ZJU\"],\"aliases\":[\"Chekiang University\",\"chekiang university\",\"Zheda\",\"zheda\",\"ZJU\",\"zju\",\"Zhejiang University\",\"zhejiang university\",\"浙江大学\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"浙江大学\"}],\"name\":\"Sheng-rong Shen\",\"org_name\":\"Zhejiang University\",\"orgid\":\"5f71b29c1c455f439fe3d0e1\"}],\"doi\":\"10.1631/jzus.b1600341\",\"id\":\"5c136700da56295a089f1471\",\"keywords\":[\"Dietary guidelines\",\"Chinese Food Pagoda\",\"Japanese Food Guide Spinning Top\",\"Dietary Guidelines for Americans\"],\"keywords_zh\":[\"Dietary guidelines\",\"Chinese Food Pagoda\",\"Japanese Food Guide Spinning Top\",\"Dietary Guidelines for Americans\",\"TS201.4\",\"膳食指南\",\"中国膳食宝塔\",\"日本膳食指南陀螺模型\",\"美国居民膳食指南\"],\"n_citation\":321,\"title\":\"Dietary Guidelines for Chinese Residents (2016): Comments and Comparisons\",\"title_zh\":\"Dietary Guidelines for Chinese Residents (2016): comments and comparisons中国居民膳食指南(2016):评价和比较\",\"url\":\"https://www.aminer.cn/pub/5c136700da56295a089f1471\",\"venue\":{\"alias\":[\"Journal of Zhejiang University-SCIENCE B\",\"Journal of Zhejiang University. Science. B\",\"Journal of Zhejiang University-Science B(Biomedicine \\u0026 Biotechnology)\",\"Journal of Zhejiang University SCIENCE B\",\"浙江大学学报(英文版)(B辑:生物医学和生物技术)\",\"Journal of Zhejiang University: Science B\",\"Journal of Zhejiang University. Science, B\",\"J Zhejiang Univ Sci B\",\"Journal of Zhejiang University\",\"JOURNAL OF ZHEJIANG UNIVERSITY: SCIENCE B\"],\"name_en\":\"Journal of Zhejiang University. Science. B\",\"name_zh\":\"\"},\"venue_hhb_id\":\"5ea51804edb6e7d53c0305bb\",\"year\":2016},{\"abstract\":\"Through comparison analysis of shale gas accumulation conditions and the similarity of geological conditions in the U.S.A and China,this study concluded that both countries have similar geological conditions favorable for shale gas accumulation and have approximate shale gas resource reserves and development potentials.In general,the gas-bearing shale layers in China possess high TOC,high thermal maturity and a high degree of later reformation.Shale gas accumulations are characterized by terrestrial facies deposit,controlled by sedimentation region division,and various and complicated distribution.Shale gas accumulations can be classified into direct and indirect types,and also can be divided into three types as southern type,northern type and north-western type according to the regional geologic conditions in China.The southern type of shale gas,distributed around the Yangtze plate,is mostly accumulated in the Paleozoic marine shale which experienced intensive structural reformation,and is featured by a large thickness of a single layer,multiple developed layers,a wide distribution area,high thermal maturity,and a high degree of later reformation,etc.The northern type of shale gas,distributed in the north China plate,is mostly accumulated in the groups from Paleozoic via Mesozoic to Neozoic,and is characterized by sedimentary migration,a high frequency of thin interbedded layers,and an obvious division between sedimental facies.The north-western type of shale gas,distributed around the Tarim Plate,is accumulated in the groups from Paleozoic to Mesozoic,and has the characteristics of various types of sedimentation,high TOC,and relatively low thermal maturity.It is concluded that the recoverable shale gas resources is predicated to be about 26 tcm in China,close to 28 tcm of that in the U.S.A.\",\"abstract_zh\":\"根据页岩气聚集的机理条件和中、美页岩气地质条件的相似性对比结果认为:中国页岩气富集地质条件优越,具有与美国大致相同的页岩气资源前景及开发潜力。中国含气页岩具有高有机质丰度、高有机质热演化程度及高后期改造程度等\\\"三高\\\"特点,页岩气具有海陆相共存、沉积分区控制以及分布多样复杂等特点。以间接型和直接型页岩气划分方法为基础并结合中国区域地质特点,将中国的页岩气富集模式划分为南方型、北方型及西北型等3种,分别具有以下特点:①以扬子地台为核心的南方型页岩气聚集条件有利并以改造较为严重的海相古生界海相页岩聚气为主,具有单层厚度大、发育层位多、分布面积广、热演化程度高、后期改造强等特点;②以华北地台为主体的北方型页岩气具有古—中—新生界页岩发育齐全、沉积迁移特征明显、薄互层变化频率高、沉积相带分隔明显等特点;③以塔里木地台为基础的西北型页岩气储层以中—古生界为主,沉积类型多、有机碳丰度高、有机质热演化程度相对较低。结论认为:中国页岩气可采资源量约为26×1012m3,大致与美国的28×1012m3相当。\",\"authors\":[{\"_id\":\"5613e26b45cedb3397a04d94\",\"aliases\":[\"Beijing Geological University\",\"beijing geological university\",\"CUGB\",\"cugb\",\"China University of Geosciences (Wuhan)\",\"china university of geosciences (wuhan)\",\"China University of Geosciences Beijing\",\"china university of geosciences beijing\",\"China university of geosciences\",\"china university of geosciences\",\"Wuhan College of Geology\",\"wuhan college of geology\",\"中国地质大学 (武汉)\",\"中国地质大学(武汉)\",\"中國地質大學(武漢)\"],\"details\":[{\"introduction\":\"The China University of Geosciences (simplified Chinese: 中国地质大学(武汉); traditional Chinese: 中國地質大學(武漢); pinyin: Zhōngguó Dìzhì Dàxué (Wǔhàn); abbreviated 地大 or CUG) is a key national university directly under the administration of the Education Ministry of the People's Republic of China. It is located in Wuhan, the capital of Central China's Hubei Province. It is a Chinese Ministry of Education Double First Class Discipline University, with Double First Class status in certain disciplines.It is regarded as one of the top geosciences university in China and exerts considerable influence on the Chinese mining and oil industry. Its notable alumni include Wen Jiabao, the Premier of China's State Council between 2003 and 2013, who attended the China University of Geosciences when it was known as the Beijing Institute of Geology (BIG). The motto \\\"Being austere and simple, keeping on practice and acting for truth\\\" is from him.\",\"language\":\"LANGUAGE_ZH\",\"name\":\"中国地质大学(武汉)\"},{\"language\":\"LANGUAGE_EN\",\"name\":\"China University of Geosciences (Wuhan)\"}],\"name\":\"ZHANG Jin-chuan\",\"name_zh\":\"张金川\",\"org_name\":\"China University of Geosciences (Wuhan)\",\"orgid\":\"5f71b3251c455f439fe40cae\"},{\"_id\":\"61685a1960a9656471eb4ac5\",\"aliases\":[\"Beijing Geological University\",\"beijing geological university\",\"CUGB\",\"cugb\",\"China University of Geosciences (Wuhan)\",\"china university of geosciences (wuhan)\",\"China University of Geosciences Beijing\",\"china university of geosciences beijing\",\"China university of geosciences\",\"china university of geosciences\",\"Wuhan College of Geology\",\"wuhan college of geology\",\"中国地质大学 (武汉)\",\"中国地质大学(武汉)\",\"中國地質大學(武漢)\"],\"details\":[{\"introduction\":\"The China University of Geosciences (simplified Chinese: 中国地质大学(武汉); traditional Chinese: 中國地質大學(武漢); pinyin: Zhōngguó Dìzhì Dàxué (Wǔhàn); abbreviated 地大 or CUG) is a key national university directly under the administration of the Education Ministry of the People's Republic of China. It is located in Wuhan, the capital of Central China's Hubei Province. It is a Chinese Ministry of Education Double First Class Discipline University, with Double First Class status in certain disciplines.It is regarded as one of the top geosciences university in China and exerts considerable influence on the Chinese mining and oil industry. Its notable alumni include Wen Jiabao, the Premier of China's State Council between 2003 and 2013, who attended the China University of Geosciences when it was known as the Beijing Institute of Geology (BIG). The motto \\\"Being austere and simple, keeping on practice and acting for truth\\\" is from him.\",\"language\":\"LANGUAGE_ZH\",\"name\":\"中国地质大学(武汉)\"},{\"language\":\"LANGUAGE_EN\",\"name\":\"China University of Geosciences (Wuhan)\"}],\"name\":\"JIANG Sheng-ling\",\"name_zh\":\"姜生玲\",\"org_name\":\"China University of Geosciences (Wuhan)\",\"orgid\":\"5f71b3251c455f439fe40cae\"},{\"_id\":\"5612cea645ce1e5962ddf48b\",\"aliases\":[\"Beijing Geological University\",\"beijing geological university\",\"CUGB\",\"cugb\",\"China University of Geosciences (Wuhan)\",\"china university of geosciences (wuhan)\",\"China University of Geosciences Beijing\",\"china university of geosciences beijing\",\"China university of geosciences\",\"china university of geosciences\",\"Wuhan College of Geology\",\"wuhan college of geology\",\"中国地质大学 (武汉)\",\"中国地质大学(武汉)\",\"中國地質大學(武漢)\"],\"details\":[{\"introduction\":\"The China University of Geosciences (simplified Chinese: 中国地质大学(武汉); traditional Chinese: 中國地質大學(武漢); pinyin: Zhōngguó Dìzhì Dàxué (Wǔhàn); abbreviated 地大 or CUG) is a key national university directly under the administration of the Education Ministry of the People's Republic of China. It is located in Wuhan, the capital of Central China's Hubei Province. It is a Chinese Ministry of Education Double First Class Discipline University, with Double First Class status in certain disciplines.It is regarded as one of the top geosciences university in China and exerts considerable influence on the Chinese mining and oil industry. Its notable alumni include Wen Jiabao, the Premier of China's State Council between 2003 and 2013, who attended the China University of Geosciences when it was known as the Beijing Institute of Geology (BIG). The motto \\\"Being austere and simple, keeping on practice and acting for truth\\\" is from him.\",\"language\":\"LANGUAGE_ZH\",\"name\":\"中国地质大学(武汉)\"},{\"language\":\"LANGUAGE_EN\",\"name\":\"China University of Geosciences (Wuhan)\"}],\"name\":\"TANG Xuan\",\"name_zh\":\"唐玄\",\"org_name\":\"China University of Geosciences (Wuhan)\",\"orgid\":\"5f71b3251c455f439fe40cae\"},{\"_id\":\"61685a1a60a9656471eb4ac7\",\"aliases\":[\"Beijing Geological University\",\"beijing geological university\",\"CUGB\",\"cugb\",\"China University of Geosciences (Wuhan)\",\"china university of geosciences (wuhan)\",\"China University of Geosciences Beijing\",\"china university of geosciences beijing\",\"China university of geosciences\",\"china university of geosciences\",\"Wuhan College of Geology\",\"wuhan college of geology\",\"中国地质大学 (武汉)\",\"中国地质大学(武汉)\",\"中國地質大學(武漢)\"],\"details\":[{\"introduction\":\"The China University of Geosciences (simplified Chinese: 中国地质大学(武汉); traditional Chinese: 中國地質大學(武漢); pinyin: Zhōngguó Dìzhì Dàxué (Wǔhàn); abbreviated 地大 or CUG) is a key national university directly under the administration of the Education Ministry of the People's Republic of China. It is located in Wuhan, the capital of Central China's Hubei Province. It is a Chinese Ministry of Education Double First Class Discipline University, with Double First Class status in certain disciplines.It is regarded as one of the top geosciences university in China and exerts considerable influence on the Chinese mining and oil industry. Its notable alumni include Wen Jiabao, the Premier of China's State Council between 2003 and 2013, who attended the China University of Geosciences when it was known as the Beijing Institute of Geology (BIG). The motto \\\"Being austere and simple, keeping on practice and acting for truth\\\" is from him.\",\"language\":\"LANGUAGE_ZH\",\"name\":\"中国地质大学(武汉)\"},{\"language\":\"LANGUAGE_EN\",\"name\":\"China University of Geosciences (Wuhan)\"}],\"name\":\"ZHANG Pei-xian\",\"name_zh\":\"张培先\",\"org_name\":\"China University of Geosciences (Wuhan)\",\"orgid\":\"5f71b3251c455f439fe40cae\"},{\"_id\":\"615450c060a96506679c8a5f\",\"aliases\":[\"Beijing Geological University\",\"beijing geological university\",\"CUGB\",\"cugb\",\"China University of Geosciences (Wuhan)\",\"china university of geosciences (wuhan)\",\"China University of Geosciences Beijing\",\"china university of geosciences beijing\",\"China university of geosciences\",\"china university of geosciences\",\"Wuhan College of Geology\",\"wuhan college of geology\",\"中国地质大学 (武汉)\",\"中国地质大学(武汉)\",\"中國地質大學(武漢)\"],\"details\":[{\"introduction\":\"The China University of Geosciences (simplified Chinese: 中国地质大学(武汉); traditional Chinese: 中國地質大學(武漢); pinyin: Zhōngguó Dìzhì Dàxué (Wǔhàn); abbreviated 地大 or CUG) is a key national university directly under the administration of the Education Ministry of the People's Republic of China. It is located in Wuhan, the capital of Central China's Hubei Province. It is a Chinese Ministry of Education Double First Class Discipline University, with Double First Class status in certain disciplines.It is regarded as one of the top geosciences university in China and exerts considerable influence on the Chinese mining and oil industry. Its notable alumni include Wen Jiabao, the Premier of China's State Council between 2003 and 2013, who attended the China University of Geosciences when it was known as the Beijing Institute of Geology (BIG). The motto \\\"Being austere and simple, keeping on practice and acting for truth\\\" is from him.\",\"language\":\"LANGUAGE_ZH\",\"name\":\"中国地质大学(武汉)\"},{\"language\":\"LANGUAGE_EN\",\"name\":\"China University of Geosciences (Wuhan)\"}],\"name\":\"TANG Ying\",\"name_zh\":\"唐颖\",\"org_name\":\"China University of Geosciences (Wuhan)\",\"orgid\":\"5f71b3251c455f439fe40cae\"}],\"doi\":\"10.3787/j.issn.1000-0976.2009.12.033\",\"id\":\"53e9aaa3b7602d970341bbab\",\"keywords\":[\"shale gas\",\"North China platform\",\"Yangtze platform\",\"feature\",\"accumulation pattern\",\"development potential\",\"China\",\"Tarim platform\",\"resource evaluation\"],\"keywords_zh\":[\"塔里木地台\",\"华北地台\",\"扬子地台\",\"资源评价\",\"页岩气\",\"富集模式\",\"开发潜力\",\"分区特点\",\"中国\"],\"n_citation\":321,\"title\":\"Accumulation types and resources characteristics of shale gas in China\",\"title_zh\":\"我国页岩气富集类型及资源特点\",\"url\":\"https://www.aminer.cn/pub/53e9aaa3b7602d970341bbab\",\"venue\":{\"alias\":[\"Natural Gas Industry\",\"natural gas industry\",\"天然气工业\"],\"name_en\":\"Natural Gas Industry\",\"name_zh\":\"天然气工业\"},\"venue_hhb_id\":\"5eb8a277edb6e7d53c0bf039\",\"year\":2009},{\"abstract\":\"This paper provides a comprehensive review of ecosystem services and their economic valuation in China. The main objective of this review is to introduce the findings of the various valuation studies, and explore the challenges that emerged in these studies. This paper shows that ecosystem services research in China went through four stages covering all the main ecosystem types and multi-scales. These studies have raised public awareness of the value of ecological and bio-resource issues, and promoted the establishment of eco-compensation mechanisms in China. However, there are still many controversies and challenges that have emerged from current ecosystem services research. We propose that future ecosystem services research focuses on i) the corresponding definition and classification systems for all ecosystems; ii) the observation and establishment of the relationship between ecosystem structures and corresponding functions; iii) the improvement and normalization of valuation methods; and iv) the exploration and analysis of the spatial and temporal variations of ecosystem services. Furthermore, it is important to improve the accessibility of ecosystem services valuation in environmental decision-making.\",\"abstract_zh\":\"生态系统服务研究是当前国际上科学研究的热点和前沿.近年来我国生态系统服务研究取得了较快进展.为了全面认识与介绍国内生态系统服务研究的状况与成果,促进国际生态系统服务研究的交流与合作,论文首先回顾了我国生态系统服务研究的4个时期,并简要概括了所取得的成就和存在的问题,最后指出,中国生态系统服务的研究应该尽快由当前的概算式研究转向更深层次的研究,尤其要重点关注生态系统功能的基础理论研究、评估指标与方法的标准化、生态服务价值动态评估模型研究、评估结果在决策过程中的应用研究以及生态系统服务的市场化机制研究.\",\"authors\":[{\"_id\":\"651288dfa9d853d5d5e53e32\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name\":\"Biao Zhang\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"542e01e8dabfaed722682f0d\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name\":\"Wenhua Li\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"542e9316dabfaed7c7c35d47\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name\":\"Gaodi Xie\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"}],\"doi\":\"10.1016/j.ecolecon.2010.03.009\",\"id\":\"53e9a281b7602d9702b87280\",\"keywords\":[\"Ecosystem\",\"Ecosystem service\",\"Valuation\",\"China\"],\"keywords_zh\":[\"生态系统\",\"生态系统服务\",\"价值评估\",\"中国\"],\"n_citation\":321,\"title\":\"Ecosystem Services Research in China: Progress and Perspective\",\"title_zh\":\"中国生态系统服务研究的回顾与展望\",\"url\":\"https://www.aminer.cn/pub/53e9a281b7602d9702b87280\",\"venue\":{\"alias\":[\"ECOLOGICAL ECONOMICS\",\"Ecological Economics\",\"ecological economics\"],\"name_en\":\"Ecological Economics\",\"name_zh\":\"\"},\"venue_hhb_id\":\"5ea60b37edb6e7d53c0433b4\",\"year\":2010},{\"abstract_zh\":\"本文运用历史分析法和反应函数法首次将中国货币政策运用于检验泰勒规则。通过计算中国货币政策中利率的泰勒规则值,并与其实际值进行比较表明,泰勒规则可以很好地衡量中国货币政策,利率规则值与实际值的偏离之处恰恰是政策操作滞后于经济形势发展之时。这表明泰勒规则能够为中国货币政策提供一个参照尺度,衡量货币政策的松紧。对中国货币政策的反应函数GMM估计表明,通胀率对利率的调整系数小于1,这是一种不稳定的货币政策规则,在这一制度下,通货膨胀或通货紧缩的产生和发展有着自我实现机制。\",\"authors\":[{\"_id\":\"6154a34b60a96506679ce049\",\"acronyms\":[\"PBC\",\"PBOC\"],\"aliases\":[\"Zhōngguó Rénmín Yínháng\",\"zhōngguó rénmín yínháng\",\"PBC\",\"pbc\",\"PBOC\",\"pboc\",\"People's Bank of China\",\"people's bank of china\",\"中国人民银行\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国人民银行\"}],\"name_zh\":\"谢平\",\"org_name\":\"People's Bank of China\",\"orgid\":\"5f71b8431c455f439fe5edf1\"},{\"_id\":\"62e3a25ad9f2043704dc60a4\",\"acronyms\":[\"PBC\",\"PBOC\"],\"aliases\":[\"Zhōngguó Rénmín Yínháng\",\"zhōngguó rénmín yínháng\",\"PBC\",\"pbc\",\"PBOC\",\"pboc\",\"People's Bank of China\",\"people's bank of china\",\"中国人民银行\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国人民银行\"}],\"name_zh\":\"罗雄\",\"org_name\":\"People's Bank of China\",\"orgid\":\"5f71b8431c455f439fe5edf1\"}],\"id\":\"604b762e6f90b7f6caa869c9\",\"keywords\":null,\"keywords_zh\":[\"泰勒规则\",\"中国货币政策\",\"实证分析\"],\"n_citation\":321,\"title\":\"Taylor Rule and Its Empirical Test in China's Monetary Policy\",\"title_zh\":\"泰勒规则及其在中国货币政策中的检验\",\"url\":\"https://www.aminer.cn/pub/604b762e6f90b7f6caa869c9\",\"venue\":{\"alias\":[\"Economic Research Journal\",\"经济研究\",\"JINGJI YANJIU\"],\"name_en\":\"Economic Research Journal\",\"name_zh\":\"经济研究\"},\"venue_hhb_id\":\"5ebd4d62edb6e7d53c10deff\",\"year\":2002},{\"abstract\":\"It is significant to have an accurate understanding of the Rural Revitalization Strategy (RRS) in China. There are three points that should be understood clearly. Firstly, what is the relationship between the RRS and urbanization strategy? Secondly, what are the scientific connotation of the \\\"twenty words\\\" policy and its interrelations? Thirdly, how the RRS can be implemented in an effective manner? This article holds that the RRS in China should be guided by the spirit of the 19thNational Congress of CPC. During the implementation process, the new-type urbanization strategy and the reality of rural differentiation in China should be taken into consideration. The five specific tasks and objectives embodied in the policy of \\\"twenty words\\\" in the RRS are interrelated. Therefore, it is important to have an accurate understanding of the scientific connotation of the\\\"twenty words\\\" policy and its interrelations. Finally, the emphasis on coordination of the three paths should be placed.\",\"abstract_zh\":\"准确把握中国乡村振兴战略,关系到乡村振兴战略实施的效率.首先是把握好乡村振兴战略与城市化战略的关系,其次是把握好\\\"二十字\\\"方针的科学内涵及其内在关系,再次是协调好乡村振兴战略的实施路径.本文认为,乡村振兴战略要以党的十九大精神为统领,而在具体的实施中,则要从区域新型城镇化战略和乡村差异化发展的实际出发.乡村振兴战略\\\"二十字\\\"方针所体现的五大具体目标任务具有相互联系性,因此,既要准确把握\\\"二十字\\\"方针的科学内涵,又要把握好这\\\"二十字\\\"方针中五大目标任务的相互关系.在具体的实施过程中,还应重视\\\"三条路径\\\"的协调推进,即\\\"五个激活\\\"驱动、\\\"五位一体\\\"协同和\\\"五对关系\\\"把控的协调推进.\",\"authors\":[{\"_id\":\"53f45be1dabfaee1c0b41bc1\",\"acronyms\":[\"ZJU\"],\"aliases\":[\"Chekiang University\",\"chekiang university\",\"Zheda\",\"zheda\",\"ZJU\",\"zju\",\"Zhejiang University\",\"zhejiang university\",\"浙江大学\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"浙江大学\"}],\"name\":\"Huang Zuhui\",\"name_zh\":\"黄祖辉\",\"org_name\":\"Zhejiang University\",\"orgid\":\"5f71b29c1c455f439fe3d0e1\"}],\"id\":\"60216ea76c834136c6abf0e3\",\"keywords\":[\"Rural Revitalization Strategy\",\"New Urbanization Strategy\",\"China\"],\"keywords_zh\":[\"乡村振兴战略\",\"新型城镇化战略\",\"中国\"],\"n_citation\":321,\"title\":\"On the Strategy of Rural Revitalization in China\",\"title_zh\":\"准确把握中国乡村振兴战略\",\"url\":\"https://www.aminer.cn/pub/60216ea76c834136c6abf0e3\",\"venue\":{},\"venue_hhb_id\":\"\",\"year\":2018},{\"abstract_zh\":\"\\\"中国英语\\\" (China English)与\\\"中国式英语\\\" (Chinglish)在起因,发展,影响等各方面完全不同的. \\\"中国英语\\\"作为一种语言现象,是一种被规范英语所接受的英语变体,有其鲜明的民族特色; \\\"中国式英语\\\"是中国的英语学习者在英语习得过程中的一种中介语现象,是中国语言和文化对英语的干扰影响的产物.我们应该充分发展中国英语,避免一些不正确的中国式英语.\",\"authors\":[{\"_id\":\"542f026edabfae48d125593d\",\"acronyms\":[\"SUSE \"],\"aliases\":[\"sìchuān lǐgōng xuéyuàn\",\"SUSE \",\"suse \",\"Sichuan University of Science and Engineering\",\"sichuan university of science and engineering\",\"四川理工学院\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"四川理工学院\"}],\"name_zh\":\"刘舰\",\"org_name\":\"Sichuan University of Science and Engineering\",\"orgid\":\"5f71b58a1c455f439fe51a40\"}],\"id\":\"604b622f6f90b7f6caeafb09\",\"keywords\":null,\"keywords_zh\":[\"中国英语\",\"中介语\",\"中国式英语\",\"语言迁移\"],\"n_citation\":321,\"title_zh\":\"中国英语与中国式英语\",\"url\":\"https://www.aminer.cn/pub/604b622f6f90b7f6caeafb09\",\"venue\":{\"alias\":[\"Master\",\"大家\",\"Great Master\"],\"name_en\":\"Master\",\"name_zh\":\"大家\"},\"venue_hhb_id\":\"5ebd3152edb6e7d53c10c736\",\"year\":2010},{\"abstract_zh\":\"中国政府明确提出2030年前碳达峰、2060年前碳中和目标,从相对减排到绝对减排,进而零排放,成为雄心勃勃的\\\"中国方案\\\"与路线图.在阐释中国减排承诺及意义的基础上,认为应对全球气候变化既是中国实现社会主义现代化的最大挑战,也是实现绿色工业化、城镇化、农业农村现代化的最大机遇;中国要实现2030年前碳达峰核心目标,须建立倒逼机制,分为四个十年阶段、八个五年规划,逐步推动绿色改革绿色创新;进而明确提出了20个方面的主要实现路径和政策建议,即控制能源消耗总量及增速约束性目标、大幅度提升非化石能源占一次能源消费比重、大幅度消减煤炭生产量和消费量,等等,以形成\\\"政策合力\\\"\\\"协同效应\\\",在推动中国高质量发展中有助经济社会发展全面绿色转型,并成为推动全球能源转型的重中之重.\",\"authors\":[{\"_id\":\"542dfe37dabfae4b91c3aa50\",\"aliases\":[\"Beijing Tsinghua University\",\"Ch'ing-Hua Ta-Hsueh\",\"Ch'ing-Hua Ta-Hsüeh\",\"Ch'ing-Hua University\",\"Ch'ing-hua Ta-hsueh\",\"Ch'ing-hua Ta-hsüeh\",\"Ch'ing-hua University\",\"Ch'inghua Tahsueh\",\"Ch'inghua Tahsüeh\",\"Ch'inghua University\",\"Chheng-hôa Tāi-ha̍k\",\"Ching-Hua Ta-Hsueh\",\"Ching-Hua Ta-Hsüeh\",\"Ching-Hua University\",\"Ching-hua Ta-hsueh\",\"Ching-hua Ta-hsüeh\",\"Ching-hua University\",\"Chinghua\",\"Chinghua Tahsueh\",\"Chinghua Tahsüeh\",\"Chinghua University\",\"Chĭng-huà Dâi-hŏk\",\"Cinghua universitetas\",\"Csinghua Egyetem\",\"MIT of China\",\"Mit of china\",\"Pamantasang Tsinghua\",\"Qing Hua\",\"Qingda\",\"Qinghua\",\"Qinghua Daxue\",\"Qinghua University\",\"Qinghuá Dàxué\",\"Qinghuá University\",\"Qīnghuá Dàxué\",\"Qīnghuá Xuétáng\",\"THSEM\",\"The Students' English Debating Association (SEDA), Tsinghua University\",\"Ts'ing Hwa\",\"Ts'ing Hwa University\",\"Tsing Hua\",\"Tsing Hua College\",\"Tsing Hua University\",\"Tsing Hwa\",\"Tsing Hwa University\",\"Tsinghua\",\"Tsinghua College\",\"Tsinghua Department of Mathematical Sciences\",\"Tsinghua Unibertsitatea\",\"Tsinghua University\",\"Tsinghua University China\",\"Tsinghua University, Beijing, China\",\"Tsinghua Yachay sunturnin\",\"Tsinghua university\",\"Tsinghua Ülikool\",\"Tsinghua Üniversitesi\",\"Tsinghua-Universität\",\"Tsinghua-universiteit\",\"Tsinghua-yliopisto\",\"Tsinghuauniversitetet\",\"Tsinxua Universiteti\",\"Ts’ing Hwa\",\"Ts’ing Hwa University\",\"Unibersidad Tsinghua\",\"Universidad Tsinghua\",\"Universidade Tsinghua\",\"Universidá Tsinghua\",\"Universitas Tsinghua\",\"Universitat Tsinghua\",\"Universiteti Tsinghua\",\"Universiti Tsinghua\",\"University of Tsinghua\",\"Università Tsinghua\",\"Université Tsinghua\",\"Univerzita Čching-chua\",\"Univerzitet Cinhua\",\"Univerzitet Đinghua\",\"Uniwersytet Tsinghua\",\"Đại học Thanh Hoa\",\"Университет Цинхуа\",\"Університет Цінхуа\",\"Цинхуа университета\",\"Цинхуа университети\",\"Цинхуа университеты\",\"Чинхуа их сургууль\",\"Ցինխուայի համալսարան\",\"אוניברסיטת צינגהואה\",\"تسينق - هوا بیلیم‌یوردو\",\"جامعة تسينغ - هوا\",\"دانشگاه چینهوا\",\"چینہوا یونیورسٹی\",\"ছিংহুয়া বিশ্ববিদ্যালয়\",\"சிங்குவா பல்கலைக்கழகம்\",\"റ്റ്സിൻഷുവ യൂണിവേഴ്സിറ്റി\",\"มหาวิทยาลัยชิงหฺวา\",\"五道口體校\",\"北京清大\",\"北京清華\",\"北京清華大學\",\"淸華大學\",\"清华大学\",\"清华大学 (北京)\",\"清华学校\",\"清華大学\",\"清華大學\",\"清華大學 (北京)\",\"清華學堂\",\"칭화 대학\"],\"details\":[{\"introduction\":\"清华大学(Tsinghua University)简称“清华”,是中华人民共和国教育部直属、中央直管副部级建制的全国重点大学,位列“世界一流大学和一流学科”、“211工程”、“985工程”,入选“2011计划”、“珠峰计划”、“111计划”、“强基计划”,为九校联盟、松联盟、中国大学校长联谊会、亚洲大学联盟、环太平洋大学联盟、清华—剑桥—MIT低碳大学联盟成员,是中国著名高等学府、中国高层次人才培养和科学技术研究的重要基地,被誉为“红色工程师的摇篮”。\\n\\n学校前身清华学堂始建于1911年,校名“清华”源于校址“清华园”地名,是清政府设立的留美预备学校,其建校的资金源于1908年美国退还的部分庚子赔款。1912年更名为清华学校。1928年更名为国立清华大学。1937年抗日战争全面爆发后南迁长沙,与国立北京大学、私立南开大学组建国立长沙临时大学,1938年迁至昆明改名为国立西南联合大学。1946年迁回清华园。1949年中华人民共和国成立,清华大学进入新的发展阶段。1952年全国高等学校院系调整后成为多科性工业大学。1978年以来逐步恢复和发展为综合性的研究型大学。\\n\\n截至2019年底,学校占地面积442.12公顷;共设有20个学院,59个系,82个本科专业;有一级学科国家重点学科22个,博士后流动站50个,一级学科博士、硕士学位授权点58个;有教职工15401人,有中国科学院院士54人,中国工程院院士40人;有在校学生50349人,其中本科生16037人,硕士生18606人,博士生15751人,港澳台侨学生845人。\\n\",\"language\":\"LANGUAGE_ZH\",\"name\":\"清华大学\"}],\"name_zh\":\"胡鞍钢\",\"org_name\":\"Tsinghua University\",\"orgid\":\"5f71b2881c455f439fe3c860\"}],\"doi\":\"10.12120/bjutskxb202103001\",\"id\":\"61cacfa75244ab9dcb1f196b\",\"keywords\":null,\"keywords_zh\":[\"中国高质量发展\",\"全球气候变化\",\"减排承诺\",\"倒逼机制\",\"碳达峰\",\"碳中和\",\"绿色工业革命\"],\"n_citation\":321,\"title\":\"China's Goal of Achieving Carbon Peak by 2030 and Its Main Approaches\",\"title_zh\":\"中国实现2030年前碳达峰目标及主要途径\",\"url\":\"https://www.aminer.cn/pub/61cacfa75244ab9dcb1f196b\",\"venue\":{},\"venue_hhb_id\":\"\",\"year\":2021},{\"abstract_zh\":\"利用中国1952~2000年各省区的人口、土地利用和人均GDP等数据,采用空间分析方法对中国区域社会经济发展差异问题进行了实证研究.对中国大陆的几何中心、可利用土地、人口和GDP总量的空间中心计算表明,空间中心统计是一种简单有效刻画要素空间分布的方法.通过对中国各省区人均GDP的空间自相关系数Moran's I的计算,表明中国社会经济发展主要指标存在强烈的空间自相关,空间分析方法不失为一种深入理解区域经济格局及其变化的重要和有益的方法.对不同年度的Moran's I和Local Moran I的分析也揭示了中国区域经济格局的时空变化规律.\",\"authors\":[{\"_id\":\"6154d70160a96506679d25ce\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name\":\"Bin MENG\",\"name_zh\":\"孟斌\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"5406866adabfae8faa60c9d8\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name\":\"Jin-Feng WANG\",\"name_zh\":\"王劲峰\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"_id\":\"542a6bafdabfae646d55f90c\",\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese Academy of Sciences Chinese Academy of Sciences\"],\"details\":[{\"language\":\"LANGUAGE_ZH\",\"name\":\"中国科学院\"}],\"name\":\"Wen-Zhong ZHANG\",\"name_zh\":\"张文忠\",\"org_name\":\"Chinese Academy of Sciences\",\"orgid\":\"5f71b29f1c455f439fe3d25c\"},{\"acronyms\":[\"CAS\"],\"aliases\":[\"CAS\",\"cas\",\"Chinese Acad Sci\",\"Chinese Academy of Sciences\",\"chinese academy of sciences\",\"chinese academy of science\",\"Chinese Academic of Sciences\",\"中国科学院\",\"中科院\",\"ChineseAcademy of Sciences\",\"Chinese Academy ofSciences\",\"Chinese Academy of Sciences (CAS)\",\"Chinese 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"title": "机构专利", - "update_time": "2026-02-27T06:40:32.726847Z" - }, - { - "id": "65b397a19e2f618b047c463a", - "description": "通过机构串提取一级机构和二级机构的ID", - "price": 0.05, - "method": "post", - "env": "open", - "type": "custom", - "title": "机构消歧pro", - "update_time": "2025-05-08T10:39:46.799628Z" - }, - { - "id": "6524f85a228b43f5d3572640", - "description": "根据期刊名称搜索期刊ID、期刊标准名称", - "price": 0, - "method": "post", - "env": "open", - "type": "search", - "title": "期刊搜索", - "update_time": "2024-11-25T02:50:11.762313Z" - }, - { - "id": "6524ff9a228b43f5d3572642", - "description": "根据期刊ID获取期刊ISSN号、简称、类型等", - "price": 0.2, - "method": "post", - "env": "open", - "type": "filter", - "title": "期刊详情", - "update_time": "2024-02-29T02:05:57.919567Z" - }, - { - "id": "65800e14520f9700eafa915f", - "description": "根据期刊ID获取论文ID列表", - "price": 0.1, - "method": "post", - "env": "open", - "type": "filter", - "title": "期刊论文", - "update_time": "2025-01-24T09:56:07.874014Z" - }, - { - "id": "6522545107bac596e60d91dd", - "description": "根据论文发布时间、期刊获取论文标题、作者、DOI、issn、关键词、机构、年份等", - "price": 0.2, - "method": "get", - "env": "open", - "type": "combine", - "title": "根据条件获取论文详情", - "update_time": "2025-03-20T03:28:24.975388Z" - }, - { - "id": "680f2c13879599061946769d", - "description": "AMiner沉思(SSE接口)", - "price": 0.8, - "method": "post", - "env": "open", - "type": "chat", - "title": "AMiner沉思", - "update_time": "2025-11-18T11:05:29.071373Z" - } - ], - "total": 29 -} \ No newline at end of file diff --git a/.video/.seedance/v1/prompt.txt b/.video/.seedance/v1/prompt.txt deleted file mode 100644 index 12d2eb7c..00000000 --- a/.video/.seedance/v1/prompt.txt +++ /dev/null @@ -1,38 +0,0 @@ -推荐设置: -- 时长: 15s -- 比例: 9:16 -- 风格: 电影感产品广告, 高级感移动端 UI 动效, 温暖真实, 面向中国大陆大众 -- 文字: 画面内所有界面文字、字幕、对白均为简体中文, 不要出现英文 UI - -Seedance Prompt: -请生成一支 15 秒竖屏中文产品宣传片, 产品名为 Synapse。受众是中国大陆的大众用户, 不是技术人群。核心表达是: AI 不再是一个需要研究模型、插件和配置的技术工具, 而是一个可以像加好友一样添加、像同事一样沟通、像专业人士一样雇佣的联系人。整支片子讲产品故事, 不讲技术原理, 不讲框架, 不讲参数。整体气质要像中国头部互联网产品发布的品牌短片: 克制、高级、清晰、亲近、可信、有行动感。 - -0-3s: 清晨自然光, 一位普通都市用户拿起手机, 在一个干净高级、符合中国主流聊天应用习惯的界面里轻触“创建工作区”。界面出现“消息”“联系人”“工作区”等简体中文入口, 动效流畅克制。镜头 slow push in, 微距 UI 特写, 让观众一眼明白这是一个以聊天协作为核心的产品。 - -3-6s: 用户在工作区里把一个 AI agent 作为联系人分享出去。画面清楚出现“添加好友”“扫一扫”“好友 ID”这类简体中文信息, 另一位用户像加微信好友一样扫码或输入好友 ID, 顺滑地把这个 AI agent 加入自己的联系人列表。重点表现“添加一个专业角色”, 不是“安装一个模板”。不要出现模型选择器、插件配置页、复杂设置页。 - -6-10s: 进入私聊界面, 用户像和真人专业顾问聊天一样自然发消息: “帮我把今天客户跟进整理一下, 顺便拉上设计一起推进。” AI 在聊天里直接回复: “好的, 已整理重点, 正在同步给设计。” 然后自然转场到群聊, 群里同时有人类成员和 AI agent, 大家在同一个 IM 会话里协作推进。AI 是群成员之一, 不是悬浮在界面外的万能助手。镜头 follow shot 配合界面滑动, 用 match cut 把私聊和群聊连起来, 传达熟悉、高效、无学习成本。 - -10-15s: 用户在手机里再发一句话: “今晚 8 点提醒我发报价, 电脑开机后继续把方案做完。” 画面切到已绑定的桌面设备安静亮起, 任务继续推进; 同时用极简、生活化的方式带出定时任务和事件驱动能力, 例如日历提醒轻亮一下、状态卡片显示“已继续执行”、一个外部事件脉冲进入会话后事情自动往前走。不要画成技术架构图, 不要出现 webhook、脚本、代码。最后收束成品牌英雄镜头: 手机联系人列表、私聊、群聊、桌面协同汇聚成一个完整画面, 屏幕上出现简洁有力的简体中文收尾文案: “像加好友一样使用 AI, 像同事一样把事做成。” 画面下方为 Synapse logo 预留干净空间。 - -镜头语言: -- premium commercial camera language -- slow push in, macro UI close-up, smooth track, one decisive whip pan transition -- 节奏从平静进入高效, 不混乱, 不炫技 - -视觉风格: -- cinematic quality, 24fps, soft film grain -- 中国都市日常办公与生活场景, 温暖晨光, 真实手机与桌面设备质感 -- 界面像成熟的中文 IM 产品, 但不要直接模仿或出现任何其他品牌 logo -- 高级互联网产品广告质感, 大众友好, 非极客, 非赛博朋克, 非科幻大片 - -声音设计: -- 温和但有推进感的现代电子配乐, 可加入少量钢琴层次 -- 轻微发送消息音、扫码提示音、通知轻响、电脑唤醒音 -- 可带极少量自然中文环境音, 但不要长篇旁白 - -避免: -- 黑客感、机房、代码雨、服务器、参数面板、复杂数据大屏 -- 机器人、机械手、悬浮 hologram、夸张科幻 HUD -- 冷蓝霓虹、加密货币风、游戏风、过度未来感 -- 屏幕信息过密、字幕过多、解释欲太强 diff --git a/.video/.seedance/v2/prompt-safe.txt b/.video/.seedance/v2/prompt-safe.txt deleted file mode 100644 index 27004186..00000000 --- a/.video/.seedance/v2/prompt-safe.txt +++ /dev/null @@ -1,15 +0,0 @@ -15s, 9:16, English UI only. - -Create a premium vertical product film for Synapse, an AI chat app. Calm pacing, clean storytelling, minimal interface, warm light, polished motion design. Main idea: AI is a contact you add and a teammate you work with inside chat. - -0-4s: A person lifts a phone in a clean modern workspace. Open a messaging app. Show a simple contact list with short English words only: "Contacts", "Add", "Scan". A new AI contact named "Agent" appears beside human contacts. Slow push in, macro UI close-up, elegant motion. - -4-9s: Open the AI contact. Private chat. User sends: "Client follow-up?" AI replies: "On it." Smooth cut into a group chat named "Team". Two coworkers and the same AI agent are already in the thread. The AI feels native to the chat, like a real participant. - -9-13s: User sends: "Continue on desktop." A linked desktop wakes and continues the same task. Show one small timer card and one soft activity pulse. Keep it visual and minimal. - -13-15s: Final hero frame. Contact list, private chat, group chat, and desktop continuity align into one clean composition. Leave space for the Synapse logo to be added later. - -Style: cinematic, 24fps, soft film grain, warm daylight, premium device materials, refined reflections, minimal messaging UI, clear composition. -Sound: soft electronic build, message tap, scan cue, quiet notification, desktop wake sound. -Avoid long text, logos, dashboards, settings pages, code, holograms, chaotic montage. diff --git a/.video/.seedance/v2/prompt.txt b/.video/.seedance/v2/prompt.txt deleted file mode 100644 index abc2873c..00000000 --- a/.video/.seedance/v2/prompt.txt +++ /dev/null @@ -1,19 +0,0 @@ -15s, 9:16, English UI only. - -Create a Synapse launch-film style promo in the tone of a Chinese internet product conference opening video: restrained, premium, clear, confident, not melodramatic. Audience is mainstream users in mainland China, but all visible UI must be short English only. UI labels 1-3 words, chat bubbles 2-5 words, no Chinese characters. - -Core message: AI is not a tool you configure. It is a contact you add, a participant inside chat, and a presence that quietly keeps work moving. - -0-4s: Premium dark-to-light opening. Calm modern Chinese office. A young professional raises a phone. Clean messaging UI. Show only "Contacts", "Add Contact", "Scan". A new AI contact named "Agent" appears beside real people. Slow push in, macro UI close-up. - -4-9s: Open the AI contact. Private chat. User sends: "Client follow-up?" AI replies: "On it." Then a clean match cut into a group thread labeled "Team". Two human teammates and the same AI agent are already inside. The AI feels native to the IM flow, not like a floating assistant panel. - -9-13s: User sends: "Continue on desktop." The phone stays in hand while a linked desktop wakes in the background and continues the same task. Show one subtle timer card and one event pulse. Suggest scheduled tasks and event-driven action without technical explanation. No code, no settings, no dashboards. - -13-15s: End on a composed keynote hero frame. Contact list, private chat, group collaboration, and desktop continuity align into one final composition. Leave space for the Synapse logo in post. - -Visual style: cinematic, 24fps, soft film grain, restrained contrast, premium device materials, clean white and graphite tones, believable messaging UI. - -Sound: subtle electronic rise, tap sounds, soft scan cue, quiet notification chime, low desktop wake tone. - -Avoid: Chinese text, long paragraphs, noisy UI, exaggerated acting, sci-fi holograms, hacker aesthetics, server rooms, code editors, neon cyberpunk, chaotic montage. diff --git a/docs/relay-auto-skills.md b/docs/relay-auto-skills.md index 6c89ba82..febf7e14 100644 --- a/docs/relay-auto-skills.md +++ b/docs/relay-auto-skills.md @@ -54,7 +54,7 @@ The API does not trust arbitrary relay-reported slugs as standalone skills. Instead, it loads a local manifest: -- `relay/cli-anything-wave1.json` +- `relay/managed-command-providers.json` For each manifest entry, it reads the local skill file: diff --git a/relay/cli-anything-wave1.json b/relay/cli-anything-wave1.json deleted file mode 100644 index f35853c5..00000000 --- a/relay/cli-anything-wave1.json +++ /dev/null @@ -1,282 +0,0 @@ -{ - "version": 1, - "capabilities": [ - { - "slug": "adguardhome", - "repoDir": "adguardhome", - "module": "adguardhome", - "command": "cli-anything-adguardhome", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "anygen", - "repoDir": "anygen", - "module": "anygen", - "command": "cli-anything-anygen", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "blender", - "repoDir": "blender", - "module": "blender", - "command": "cli-anything-blender", - "probe": { - "type": "executable_any", - "candidates": ["blender"], - "paths": ["/Applications/Blender.app/Contents/MacOS/Blender"] - } - }, - { - "slug": "cloudcompare", - "repoDir": "cloudcompare", - "module": "cloudcompare", - "command": "cli-anything-cloudcompare", - "probe": { - "type": "executable_any", - "candidates": ["CloudCompare", "cloudcompare"], - "paths": ["/Applications/CloudCompare.app/Contents/MacOS/CloudCompare"] - } - }, - { - "slug": "comfyui", - "repoDir": "comfyui", - "module": "comfyui", - "command": "cli-anything-comfyui", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "drawio", - "repoDir": "drawio", - "module": "drawio", - "command": "cli-anything-drawio", - "probe": { - "type": "executable_any", - "candidates": ["draw.io", "drawio", "draw.io.exe"], - "paths": ["/Applications/draw.io.app/Contents/MacOS/draw.io"] - } - }, - { - "slug": "freecad", - "repoDir": "freecad", - "module": "freecad", - "command": "cli-anything-freecad", - "probe": { - "type": "executable_any", - "envPathVar": "FREECAD_PATH", - "candidates": ["freecadcmd", "FreeCADCmd", "freecad", "FreeCAD"], - "paths": [ - "/Applications/FreeCAD.app/Contents/MacOS/FreeCADCmd", - "/Applications/FreeCAD.app/Contents/MacOS/FreeCAD", - "/usr/bin/freecadcmd", - "/usr/bin/freecad", - "/usr/local/bin/freecadcmd", - "/usr/local/bin/freecad", - "/snap/bin/freecad", - "C:/Program Files/FreeCAD/bin/FreeCADCmd.exe", - "C:/Program Files/FreeCAD/bin/FreeCAD.exe", - "C:/Program Files (x86)/FreeCAD/bin/FreeCADCmd.exe", - "C:/Program Files (x86)/FreeCAD/bin/FreeCAD.exe" - ] - } - }, - { - "slug": "gimp", - "repoDir": "gimp", - "module": "gimp", - "command": "cli-anything-gimp", - "probe": { - "type": "executable_any", - "candidates": ["gimp", "gimp-2.10", "gimp-2.99"], - "paths": ["/Applications/GIMP.app/Contents/MacOS/gimp"] - } - }, - { - "slug": "inkscape", - "repoDir": "inkscape", - "module": "inkscape", - "command": "cli-anything-inkscape", - "probe": { - "type": "executable_any", - "candidates": ["inkscape"], - "paths": ["/Applications/Inkscape.app/Contents/MacOS/inkscape"] - } - }, - { - "slug": "intelwatch", - "repoDir": "intelwatch", - "module": "intelwatch", - "command": "cli-anything-intelwatch", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "kdenlive", - "repoDir": "kdenlive", - "module": "kdenlive", - "command": "cli-anything-kdenlive", - "probe": { - "type": "executable_any", - "candidates": ["melt"] - } - }, - { - "slug": "krita", - "repoDir": "krita", - "module": "krita", - "command": "cli-anything-krita", - "probe": { - "type": "executable_any", - "envPathVar": "KRITA_PATH", - "candidates": ["krita"], - "paths": ["/Applications/krita.app/Contents/MacOS/krita"] - } - }, - { - "slug": "libreoffice", - "repoDir": "libreoffice", - "module": "libreoffice", - "command": "cli-anything-libreoffice", - "probe": { - "type": "executable_any", - "candidates": ["libreoffice", "soffice"], - "paths": [ - "/Applications/LibreOffice.app/Contents/MacOS/soffice", - "C:/Program Files/LibreOffice/program/soffice.exe", - "C:/Program Files (x86)/LibreOffice/program/soffice.exe" - ] - } - }, - { - "slug": "mermaid", - "repoDir": "mermaid", - "module": "mermaid", - "command": "cli-anything-mermaid", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "mubu", - "repoDir": "mubu", - "module": "mubu", - "command": "cli-anything-mubu", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "musescore", - "repoDir": "musescore", - "module": "musescore", - "command": "cli-anything-musescore", - "probe": { - "type": "executable_any", - "envPathVar": "MUSESCORE_PATH", - "candidates": ["mscore", "musescore"], - "paths": [ - "/Applications/MuseScore 4.app/Contents/MacOS/mscore", - "~/Applications/MuseScore 4.app/Contents/MacOS/mscore" - ] - } - }, - { - "slug": "notebooklm", - "repoDir": "notebooklm", - "module": "notebooklm", - "command": "cli-anything-notebooklm", - "probe": { - "type": "executable_any", - "candidates": ["notebooklm"] - } - }, - { - "slug": "novita", - "repoDir": "novita", - "module": "novita", - "command": "cli-anything-novita", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "obs-studio", - "repoDir": "obs-studio", - "module": "obs_studio", - "command": "cli-anything-obs-studio", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "ollama", - "repoDir": "ollama", - "module": "ollama", - "command": "cli-anything-ollama", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "renderdoc", - "repoDir": "renderdoc", - "module": "renderdoc", - "command": "cli-anything-renderdoc", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "rms", - "repoDir": "rms", - "module": "rms", - "command": "cli-anything-rms", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "shotcut", - "repoDir": "shotcut", - "module": "shotcut", - "command": "cli-anything-shotcut", - "probe": { - "type": "executable_any", - "candidates": ["melt"] - } - }, - { - "slug": "slay_the_spire_ii", - "repoDir": "slay_the_spire_ii", - "module": "slay_the_spire_ii", - "command": "cli-anything-sts2", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "zoom", - "repoDir": "zoom", - "module": "zoom", - "command": "cli-anything-zoom", - "probe": { - "type": "wrapper_only" - } - }, - { - "slug": "zotero", - "repoDir": "zotero", - "module": "zotero", - "command": "cli-anything-zotero", - "probe": { - "type": "wrapper_only" - } - } - ] -}