picadae calibration programs
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.gitignore AudioDevice.py : fixed linear_buffer() p_ac.py : changed dutyCyclePct to a list, added real-timen note analysis and multi-pitch tests. Added keyboard.py, rt_note_analysis.py, plot_note_analysis.py, plot_all_note_durations.ipynb. 4 gadus atpakaļ
AudioDevice.py AudioDevice.py : Change default channel count from 1 (mono) to 2 (stereo). 3 gadus atpakaļ
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README.md doc/min_max_db.png, us_db.png : Iniital commit 3 gadus atpakaļ
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do_td_plot.png README.md,doc/*.png : Updates to verify plotting and add example plots to README.md 3 gadus atpakaļ
elbow.py Added license notices to all files. Initial commit: LICENCE and COPYRIGHT. 3 gadus atpakaļ
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p_ac.py Added license notices to all files. Initial commit: LICENCE and COPYRIGHT. 3 gadus atpakaļ
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plot_all_note_durations.ipynb AudioDevice.py : fixed linear_buffer() p_ac.py : changed dutyCyclePct to a list, added real-timen note analysis and multi-pitch tests. Added keyboard.py, rt_note_analysis.py, plot_note_analysis.py, plot_all_note_durations.ipynb. 4 gadus atpakaļ
plot_calibrate.ipynb Many changes and additions. First working version of calibrate.py Replaced analysis parameter dbRefWndMs with dbLinRef rms_analysis.py : Added samples_to_linear_residual() plot_seq_1.py : initial commit. 4 gadus atpakaļ
plot_calibrate.py Added license notices to all files. Initial commit: LICENCE and COPYRIGHT. 3 gadus atpakaļ
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README.md

Picadae Calibration Programs

Install

sudo dnf install python3-devel jack-audio-connection-kit-devel

prerequisites: pyyaml sounddevice soundfile pthon-rtmidi

export PYTHONPATH=${HOME}/src/picadae/control/app python p_ac.py -c p_ac.yml

Data collection

Record a sequence of notes of decreasing dynamic level

python p_ac.py # start the interactive data collection program

Capture note 60 and 61 using the full_pulseL[] and holdDutyPctD{} from the p_ac.yml

c 60 61

Plot Seq 1 python plot_seq.py ~/temp/p_ac_3_od p_ac.yml 60 10 do_td_plot(inDir,cfg.analysisArgs, pitch, take_id )

Multi Plot 1 python plot_seq.py p_ac.yml ~/temp/p_ac_3_od td_multi_plot 60 3 60 4 60 5 plot_seq.py do_td_multi_plot(inDir,cfg.analysisArgs,[(36,4), (48,2)] )

Spectral Ranges python plot_seq.py p_ac.yml ~/temp/p_ac_3_od plot_spectral_ranges 60 3 60 4

Multi Usec dB python plot_seq_1.py p_ac.yml ~/temp/p_ac_3_od us_db 84

Usec dB Spread python plot_seq_1.py p_ac.yml ~/temp/p_ac_3_od us_db_map 84 72

Min Max python plot_seq_1.py p_ac.yml ~/temp/p_ac_3_od min_max 36 48 60 72 84

Min Max 2 The last number in the list is the ‘takeId’ python plot_seq_1.py p_ac.yml ~/temp/p_ac_3_od min_max_2 36 48 60 72 84 2

python plot_seq_1.py p_ac.yml ~/temp/p_ac_3_od manual_db

Interpolate across the min and max db values to form the min/max curves for the complete set of keys. The anchor points for the curves are taken from cfg record manuMinD,manualAnchorPitchMinDbL, and manualMaxDbL.

      # select the event (takeId, eventIdx) to use to represent the min value for each pitch
      manualMinD: {
        36: [2, 10],
        48: [2, 10],
        60: [2, 10],
        72: [2, 10],
        84: [2, 10]
        },

      # leave 60 out of the min anchor point list
      manualAnchorPitchMinDbL: [ 36,48,72,84 ],
      
      manualAnchorPitchMaxDbL: [ 36,48,60,72,84 ],