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Task #3998: Documenter le code MMS/SCM avec IDLdoc
Task #4000: Formatage des commentaires MMS/SCM
Task #4003: MàJ du document Ground Segment Development Plan for RPWI
Task #4001: Adapter le code IDL d'MMS/SCM à JUICE/SCM
Task #4024: Première version calibration python
Task #4028: Create Kernel in python
Task #4030: Bessel filter
Task #4031: DFB filter
Task #4032: Antenna response function
Task #4037: Bandpass filter
Task #4029: Extract and export cdf file
Task #4038: Discover units test python methods and Create Unit tests of the kernel
Task #4039: Unit test Bessel filter
Task #4040: Unit test DFB
Task #4041: Unit test Antenna filter
Task #4044: Create unit test for corgain (ant, dfb, bessel)
Task #4045: Reorganise the code to have all config/metadatas in one csv file, called by the unit tests
Task #4043: Create the complete Kernel
Task #4050: Create the kernel_creation function
Task #4051: Unit test kernel_creation
Task #4052: Full code documentation
Task #4053: Create deconvo_vec function (kernel part)
Task #4055: Check real/imag parts
Task #4056: Shift kernel
Task #4054: Hanning window creation
Task #4057: Coscub window creation
Task #4058: Gaussian window creation
Task #4059: Trapezoid window creation
Task #4060: Unit test deconvo vec (for each window type)
Task #4062: Correct the documentation strings warnings and pylint errors (if possible)
Task #4061: deconvo_vec convolution part
Task #4066: Implement graphical comparison between idl and python calibration
Task #4065: Implement blk_con IDL function
Task #4067: Create Calibrate CDF function
Task #4068: Implement the blocks separation, calibration and concatenation after being calibrated
Task #4069: Implement the cdf writing of results
Task #4070: Implement function that compare two l1b cdf file data
Task #4071: General class to compare waveforms, in order to compare easily different cdf results
Support #4075: Obtain good result in the comparison of Reference/IDL/python waveforms
Task #4076: Implementation of ConfigHandler class
Task #4077: Implement function that compute the spectrogram of a waveform
Task #4078: Implement a simple spectrogram plot
Task #4079: Create function that plot multiple spectrograms
Task #4081: Create Function that compare idl spectrum and computed spectrum
Support #4082: Find why the computed spectrum is very different of ref, only for antenna y and z, probably a bug
Feature #4083: Make documentation of all important implemented functions (concerning spectra and waveform manipulation)
Task #4085: Reorganise and simplify spectra related functions
Support #4084: Investigate why results are in general better for antenna x than y and z
Task #4086: Spectra densities computation
Task #4087: Spectra densities plot and comparison
Task #4088: Completely change ConfigHandler functioning
Task #4089: ConfigHandler modularity implementation
Task #4091: Global attributes and cdf name gestion
Task #4092: default / current / limits config gestion
Task #4093: Make class for deduce parameter values, depending on other parameters
Task #4094: kernel_creation.py reworked for modularity
Task #4095: Implement system of class extends for kernel creation and deduce_parameters
Task #4099: Spectra powers computation
Task #4100: Spectra powers plot / comparison
Task #4101: Quicklook computation / plot
Task #4102: Config Handler and config files modifications / improvements
Task #4103: Modularisation of calibrate data block
Task #4105: Create functional Diagram of the code
Task #4106: Sphinx documentation with cross referencing, complete explanations, structurations : calibration part
Task #4107: Sphinx documentation with cross referencing, complete explanations, structurations : configuration part
Task #4108: Sphinx documentation with cross referencing, complete explanations, structurations : evaluation part
Task #4109: Rewrite the readme with a summary of the documentation
Task #4112: Add freq samp deducing function in deduce parameters
Task #4113: Reorganise functions (kernel conv window, waveform padding, set frequency first, calfactor
Task #4116: Adapt the code to use SCHB mode
Task #4117: Adapt the code to have correct visual reprentation of SHCB results
Task #4120: Add documentation on all code parameters
Task #4122: Make correct and complete quicklook, with same infos than MMS IDL's one
Bug #4123: Resolve problems with epochs
Task #4124: Create script with inline inputs, for calibrate and quicklook
Task #4126: Modify config handler (config file gestion) and adapt to the new config handler use in every functions
Task #4125: Make inline arguments gestion modular, in separate function, to use it in all scripts
Task #4129: Resolve plenty of problems concerning configHandler
Task #4130: Implement a first bash script, with auto venv use
Bug #4131: Resolve problems with venv / conda conflict on local machine
Task #4132: Make the cdf data extraction modular to prepare the different extraction needed
Task #4133: Adapt the matlab code for cdf data extraction (JUICE sid7)
Task #4138: Produce a waveform plot of JUICE data using code based on matlab code
Task #4139: Take the python code of David Pisa instead of Matlab code
Task #4140: Resolve the problem with epochs to be able to quicklook data
Task #4145: Create generic log printer (for log file and/or terminal)
Task #4149: Add systematical logs for each steps (with error excepts, errors, warnings, infos) in calibration part
Task #4150: Modify the extract data/ epoch part to handle JUICE SID 1/2/3/7 separetely
Task #4151: Reorganisation of kernel construction
Task #4154: Add systematical logs for each steps (with error excepts, errors, warnings, infos) in evaluation part and the rest
Task #4155: Create and improve the scripts to have 3 fully independent and functional scripts
Task #4033: Fourier transform (and inverse transform) function
Feature #4080: Write installation notice
Task #4110: Analyse fichiers L1A JUICE
Task #4157: Create interactive version of quicklook, to analyse cdf data
Task #4158: Find proper tools and solutions fo allow data refresh in quicklook
Task #4159: Find proper solution for zoom / move of data
Task #4160: Create a version of quicklook with some parameter buttons that modify spectra
Task #4163: Fusion the static and interactive quicklooks by using same plot functions (same fig/axs handle) -> make it modular
Task #4164: Modify the visuals of interactive and static quicklook to be more modular
Task #4165: Modify deeply the code organisation to have separate part for compare cdfs / interactive plot and one function (plot data) for all plots
Task #4168: Improve and resolve problems / bugs concerning interactive plots
Task #4171: Add buttons to change the content struct
Task #4172: Adapt the calibration / evaluation code to allow JUICE files
Bug #4184: Start the rework of documentation
Bug #4183: Reorganise and document the display data part
Task #4181: Code reorganisation to have scripts separately + debuging
Bug #4182: Lot of new sh and python scripts added, around calibration and display data
Task #4179: Juice files first calibration
Task #4180: JUICE quicklook analysis
Task #4187: Code Analysis / Investigation / Tests / Experiments in order to have same spectra densities results than matlab code
Bug #4188: The problem with JUICE results is not resolved
Support #4197: Research with laurent about the difference of code results and experimentations
Task #4190: Make all the variables of input cdf be in output cdf
Task #4191: Make the script able to specify freely custom values of any parameters
Task #4193: register all remaining taks written these last month in a summarry document
Bug #4194: Debug/resolution of some little remaining tasks registered
Bug #4195: Documentation debugging
Task #4196: Create script for documentation generation (cleaning/creation/show)
Task #4206: Documentation complete add and upgrade
Support #4207: New tries concerning the differences between python and matlab results
Task #4208: First version of a "time extract" method
Task #4210: Finish complete time extract method
Task #4211: implement system to check the version of cdf files and take the chosen version of cdfs when doing time extract
Task #4212: Create 'file name' used in plot resulting of the merge of multiple cdf files
Bug #4213: Make the 'file name' in the plot readable (using of multiple lines)
Task #4214: Create a sh script that use time extract, by specifying a time limits and a cdfs dir
Task #4216: Modify the extract argvs and env var method to handle solo and multiple extract in one time
Task #4215: Modify the extract_cdf methods to have a merge between extract and time extract
Task #4218: Make all the python and sh scripts using freely multiple or solo extract method
Task #4221: Create a GUI for selection of a range of time to plot
Task #4223: Find the problem of difference between matlab and python code
Bug #4222: Make the GUI able to select what we want to plot + put default times
Task #4226: Advances in the comparison between Matlab and python results
Task #4227: Reorganisation of the python scripts for modularisation
Task #4228: Make the GUI a general tool, replacing the interact interface
Task #4229: Update documentation for time/solo extract
Task #4230: Add a check if we don't find cdfs in the time limits and stop the execution
Task #4235: Find the cdfs with temperature data in it and test to extract them
Feature #4236: Modify the data extraction method to allow the extract of completely different cdfs (temp for ex)
Bug #4237: Modify the evaluation part (creation of spectrum and densities, display, plot) + configuration to plot different cdf data (temp for ex)
Task #4239: Improvements and bug resolve for temperature spectrum computing and plots
Task #4240: Professional training about the distribution (and learn of automatisation tools) of python application
Task #4245: Change the code from pyenv environnement to poetry environment
Task #4241: Software exploration for documentation tools following the professional training.
Task #4242: Documentation improvements following the professional training
Task #4243: Documentation update, especially following the reorganisation of the python script use and the rework of the doc root
Task #4244: Bug solving for spectrum computation problems
Task #4256: Gathering and analysis of all remaining open tasks
Task #4257: Discovering of the Ruff linter and formatter+ experiments
Task #4258: Creation of a ruff pre commit hook
Task #4260: Add documentation handle in pre commit hooks
Task #4261: Discover of pytest and add to pre commit hooks
Task #4262: Add multiple pytests (init, extract, display)
Task #4265: Add a system that allows to handle data without the need to compute their spectra
Task #4266: Research for a method to easily and beautifuly document visually the code structure
Task #4267: Creation of a visual documentation of the code
Task #4268: Make the writing and initialization parts separated from the others
Task #4282: Create pdf user documentation (Three first iterations)
Task #4283: Test the different SID, gather infos from the test, and cross infos with LFR manual
Task #4286: Update sphinx documentation for the new code organisation + modifications done when doing the pdf doc
Task #4284: Modify the code to be coherent in physical units
Bug #4285: Bug with MMS files now that the code has been changed a lot
Task #4287: Add of some modularisation in parameters
Task #4305: Creation of a table documenting all parameters that can be set by the user, with default value and location
Task #4306: Improve and simplify some parameters calls and use
Task #4307: Clean and simplify the config files
Task #4308: Change the way the datetimes are corrected
Task #4309: Find how to force the documentation to trigger error even for warnings
Task #4310: Improve the GUI by adding a embedded window containing the print content
Task #4311: Develop a little code that for all cdfs in one dir, make a table summarizing their content and quicklook them

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