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Description
Roadmap and Ideas
This used to be a Project Board; Needs Updating.
A place to keep track of ideas.
Additional modelling routines and utilities
TEM and arbitrary waveform
Improve the GPR-routine
Load and save
Functions to easily store and load model information (resistivity model, acquisition parameters, and modelling parameters) together with the modelling data (using using pickle or shelveh5py; see emg3d).
General
Inversion
- empymod#20
- Inversion routines, preferably a selection of different ones.
- Add some clever checks, e.g. as in Key (2012): abort loops if the field is strongly attenuated.
Additional (semi-)analytical functions (where possible)
- Complete full-space (electric and magnetic source and receiver); space-time domain
- Extend diffusive half-space solution to magnetic sources and receivers; space-frequency and space-time domains
- Complete half-space
Extend examples (example-notebooks)
- Add different methods (e.g. DC)
- Reproduce published results
Transforms
Filter Library
- empymod#106: See lib-dlf
- empymod#90: Also related
Hankel
- Add the
fht-module from FFTLog for the Hankel transform.
Fourier
- Change
fftto use discrete sine/cosine transforms instead, as all other Fourier transforms - If previous step is successful, clean up the internal decisions (
utils.check_time) when to use sine/cosine transform (not consistent at the moment, some choice only exists withffhtimpulse responses,fqweandfftloguse sine for impulse, and all three use sine for step-on responses and cosine for step-off responses)
Todo
- Enhancements-Tag in Issues
- Gradients
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