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fe269b02b4
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.gitignore
vendored
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.gitignore
vendored
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auto/
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*.tex
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*.bbl
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*.synctex.gz
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.auctex-auto/
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_minted*
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# Emacs
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auto/
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# Simulink Real Time
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*bio.m
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*pt.m
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*ref.m
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*ri.m
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*xcp.m
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*.mldatx
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*.slxc
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*.xml
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*_slrt_rtw/
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# data
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data/
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# Windows default autosave extension
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*.asv
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# OSX / *nix default autosave extension
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*.m~
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# Compiled MEX binaries (all platforms)
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*.mex*
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# Packaged app and toolbox files
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*.mlappinstall
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*.mltbx
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# Generated helpsearch folders
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helpsearch*/
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# Simulink code generation folders
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slprj/
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sccprj/
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# Matlab code generation folders
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codegen/
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# Simulink autosave extension
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*.autosave
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# Octave session info
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octave-workspace
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doc/APA300ML.pdf
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doc/APA300ML.pdf
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doc/Catalog-CPL190290.pdf
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doc/Catalog-CPL190290.pdf
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doc/IO131-OEM-Datasheet.pdf
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doc/IO131-OEM-Datasheet.pdf
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doc/L-9517-9678-05-A_Data_sheet_VIONiC_series_en.pdf
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doc/L-9517-9678-05-A_Data_sheet_VIONiC_series_en.pdf
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doc/L-9517-9862-01-C_Data_sheet_RKLC_EN.pdf
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doc/L-9517-9862-01-C_Data_sheet_RKLC_EN.pdf
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doc/RS250S.pdf
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doc/RS250S.pdf
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index.html
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1
index.html
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test-bench-nano-hexapod.html
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matlab/identif_analyze.m
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matlab/identif_analyze.m
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%% Clear Workspace and Close figures
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clear; close all; clc;
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%% Intialize Laplace variable
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s = zpk('s');
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addpath('./src/');
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% Test with one APA
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%% Load measurement data for APA number 1
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load(sprintf('mat/frf_data_%i_sweep_lf.mat', 2), 't', 'Va', 'Vs', 'de', 'da');
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% Compute transfer functions:
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Ts = (t(end) - t(1))/(length(t)-1);
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Fs = 1/Ts;
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win = hanning(ceil(1*Fs)); % Hannning Windows
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[G_dvf, f] = tfestimate(Va, de, win, [], [], 1/Ts);
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[G_d, ~] = tfestimate(Va, da, win, [], [], 1/Ts);
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[G_iff, ~] = tfestimate(Va, Vs, win, [], [], 1/Ts);
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[coh_dvf, ~] = mscohere(Va, de, win, [], [], 1/Ts);
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[coh_d, ~] = mscohere(Va, da, win, [], [], 1/Ts);
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[coh_iff, ~] = mscohere(Va, Vs, win, [], [], 1/Ts);
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%%
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figure;
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hold on;
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plot(f, coh_dvf);
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plot(f, coh_d);
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plot(f, coh_iff);
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hold off;
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set(gca, 'XScale', 'log');
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%%
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figure;
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tiledlayout(2, 1, 'TileSpacing', 'None', 'Padding', 'None');
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ax1 = nexttile;
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hold on;
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plot(f, abs(G_dvf));
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plot(f, abs(G_d));
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hold off;
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set(gca, 'XScale', 'log'); set(gca, 'YScale', 'log');
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ylabel('Amplitude $V_{out}/V_{in}$ [V/V]'); set(gca, 'XTickLabel',[]);
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hold off;
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ax2 = nexttile;
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hold on;
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plot(f, 180/pi*angle(G_dvf));
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plot(f, 180/pi*angle(G_d));
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hold off;
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set(gca, 'XScale', 'log'); set(gca, 'YScale', 'lin');
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xlabel('Frequency [Hz]'); ylabel('Phase [deg]');
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hold off;
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yticks(-360:90:360);
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linkaxes([ax1,ax2],'x');
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xlim([5, 5e3]);
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figure;
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tiledlayout(2, 1, 'TileSpacing', 'None', 'Padding', 'None');
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ax1 = nexttile;
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plot(f, abs(G_iff));
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set(gca, 'XScale', 'log'); set(gca, 'YScale', 'log');
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ylabel('Amplitude $V_{out}/V_{in}$ [V/V]'); set(gca, 'XTickLabel',[]);
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hold off;
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ax2 = nexttile;
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plot(f, 180/pi*angle(G_iff));
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set(gca, 'XScale', 'log'); set(gca, 'YScale', 'lin');
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xlabel('Frequency [Hz]'); ylabel('Phase [deg]');
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hold off;
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yticks(-360:90:360);
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linkaxes([ax1,ax2],'x');
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xlim([0.1, 10]);
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% Comparison of all APA
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%% Load all the measurements
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meas_data = {};
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for i = 1:7
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meas_data(i) = {load(sprintf('mat/frf_data_%i.mat', i), 't', 'Va', 'Vs', 'de', 'da')};
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end
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matlab/identif_data.mat
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matlab/identif_data.mat
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matlab/identif_measure.slx
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matlab/identif_measure.slx
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matlab/identif_model.slx
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matlab/identif_model.slx
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matlab/identif_save.m
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matlab/identif_save.m
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% =frf_save.m= - Save Data
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% :PROPERTIES:
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% :header-args: :tangle matlab/frf_save.m
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% :END:
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% First, we get data from the Speedgoat:
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tg = slrt;
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f = SimulinkRealTime.openFTP(tg);
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mget(f, 'data/data.dat');
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close(f);
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% And we load the data on the Workspace:
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data = SimulinkRealTime.utils.getFileScopeData('data/data.dat').data;
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da = data(:, 1); % Excitation Voltage (input of PD200) [V]
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de = data(:, 2); % Measured voltage (force sensor) [V]
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Vs = data(:, 3); % Measurment displacement (encoder) [m]
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Va = data(:, 4); % Measurement displacement (attocube) [m]
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t = data(:, end); % Time [s]
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% And we save this to a =mat= file:
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apa_number = 1;
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% leg_number = 4;
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save(sprintf('mat/frf_data_leg_coder_%i_noise.mat', apa_number), 't', 'Va', 'Vs', 'de', 'da');
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% save(sprintf('mat/frf_data_leg_coder_%i_sweep.mat', apa_number), 't', 'Va', 'Vs', 'de', 'da');
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% save(sprintf('mat/frf_data_leg_coder_%i_noise_hf.mat', apa_number), 't', 'Va', 'Vs', 'de', 'da');
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% save(sprintf('mat/frf_data_leg_coder_%i_add_mass_closed_circuit.mat', apa_number), 't', 'Va', 'Vs', 'de', 'da');
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matlab/identif_setup.m
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matlab/identif_setup.m
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%% Clear Workspace and Close figures
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clear; close all; clc;
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%% Intialize Laplace variable
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s = zpk('s');
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addpath('./src/');
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%% Simulation configuration
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Fs = 10e3; % Sampling Frequency [Hz]
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Ts = 1/Fs; % Sampling Time [s]
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%% Data record configuration
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Trec_start = 5; % Start time for Recording [s]
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Trec_dur = 100; % Recording Duration [s]
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Tsim = 2*Trec_start + Trec_dur; % Simulation Time [s]
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%% Shaped Noise
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V_noise = generateShapedNoise('Ts', 1/Fs, ...
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'V_mean', 3.25, ...
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't_start', Trec_start, ...
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'exc_duration', Trec_dur, ...
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'smooth_ends', true, ...
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'V_exc', 0.05/(1 + s/2/pi/10));
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%% Sweep Sine
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gc = 0.1;
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xi = 0.5;
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wn = 2*pi*94.3;
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% Notch filter at the resonance of the APA
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G_sweep = 0.2*(s^2 + 2*gc*xi*wn*s + wn^2)/(s^2 + 2*xi*wn*s + wn^2);
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V_sweep = generateSweepExc('Ts', Ts, ...
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'f_start', 10, ...
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'f_end', 400, ...
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'V_mean', 3.25, ...
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't_start', Trec_start, ...
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'exc_duration', Trec_dur, ...
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'sweep_type', 'log', ...
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'V_exc', G_sweep*1/(1 + s/2/pi/500));
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%% High Frequency Shaped Noise
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[b,a] = cheby1(10, 2, 2*pi*[300 2e3], 'bandpass', 's');
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wL = 0.005*tf(b, a);
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V_noise_hf = generateShapedNoise('Ts', 1/Fs, ...
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'V_mean', 3.25, ...
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't_start', Trec_start, ...
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'exc_duration', Trec_dur, ...
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'smooth_ends', true, ...
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'V_exc', wL);
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%% Sinus excitation with increasing amplitude
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V_sin = generateSinIncreasingAmpl('Ts', 1/Fs, ...
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'V_mean', 3.25, ...
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'sin_ampls', [0.1, 0.2, 0.4, 1, 2, 4], ...
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'sin_period', 1, ...
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'sin_num', 5, ...
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't_start', Trec_start, ...
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'smooth_ends', true);
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%% Select the excitation signal
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V_exc = timeseries(V_noise(2,:), V_noise(1,:));
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%% Plot
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figure;
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tiledlayout(1, 2, 'TileSpacing', 'Normal', 'Padding', 'None');
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ax1 = nexttile;
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plot(V_exc(1,:), V_exc(2,:));
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xlabel('Time [s]'); ylabel('Amplitude [V]');
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ax2 = nexttile;
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win = hanning(floor(length(V_exc)/8));
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[pxx, f] = pwelch(V_exc(2,:), win, 0, [], Fs);
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plot(f, pxx)
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xlabel('Frequency [Hz]'); ylabel('Power Spectral Density [$V^2/Hz$]');
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set(gca, 'xscale', 'log'); set(gca, 'yscale', 'log');
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xlim([1, Fs/2]); ylim([1e-10, 1e0]);
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%% Save data that will be loaded in the Simulink file
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save('./frf_data.mat', 'Fs', 'Ts', 'Tsim', 'Trec_start', 'Trec_dur', 'V_exc');
|
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matlab/speedgoat_IO318_100k_CI_01585.mat
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matlab/speedgoat_IO318_100k_CI_01585.mat
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test-bench-nano-hexapod.html
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test-bench-nano-hexapod.html
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<?xml version="1.0" encoding="utf-8"?>
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||||
<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Strict//EN"
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||||
"http://www.w3.org/TR/xhtml1/DTD/xhtml1-strict.dtd">
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||||
<html xmlns="http://www.w3.org/1999/xhtml" lang="en" xml:lang="en">
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||||
<head>
|
||||
<!-- 2021-06-07 lun. 19:00 -->
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||||
<meta http-equiv="Content-Type" content="text/html;charset=utf-8" />
|
||||
<title>Nano-Hexapod - Test Bench</title>
|
||||
<meta name="author" content="Dehaeze Thomas" />
|
||||
<meta name="generator" content="Org Mode" />
|
||||
<link rel="stylesheet" type="text/css" href="https://research.tdehaeze.xyz/css/style.css"/>
|
||||
<script type="text/javascript" src="https://research.tdehaeze.xyz/js/script.js"></script>
|
||||
</head>
|
||||
<body>
|
||||
<div id="org-div-home-and-up">
|
||||
<a accesskey="h" href="../index.html"> UP </a>
|
||||
|
|
||||
<a accesskey="H" href="../index.html"> HOME </a>
|
||||
</div><div id="content">
|
||||
<h1 class="title">Nano-Hexapod - Test Bench</h1>
|
||||
<div id="table-of-contents">
|
||||
<h2>Table of Contents</h2>
|
||||
<div id="text-table-of-contents">
|
||||
<ul>
|
||||
<li><a href="#orgc63308d">1. Test-Bench Description</a></li>
|
||||
</ul>
|
||||
</div>
|
||||
</div>
|
||||
<hr>
|
||||
<p>This report is also available as a <a href="./test-bench-nano-hexapod.pdf">pdf</a>.</p>
|
||||
<hr>
|
||||
|
||||
<div id="outline-container-orgc63308d" class="outline-2">
|
||||
<h2 id="orgc63308d"><span class="section-number-2">1</span> Test-Bench Description</h2>
|
||||
<div class="outline-text-2" id="text-1">
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||||
<div class="note" id="org060848e">
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||||
<p>
|
||||
Here are the documentation of the equipment used for this test bench:
|
||||
</p>
|
||||
<ul class="org-ul">
|
||||
<li>Voltage Amplifier: PiezoDrive <a href="doc/PD200-V7-R1.pdf">PD200</a></li>
|
||||
<li>Amplified Piezoelectric Actuator: Cedrat <a href="doc/APA300ML.pdf">APA300ML</a></li>
|
||||
<li>DAC/ADC: Speedgoat <a href="doc/IO131-OEM-Datasheet.pdf">IO313</a></li>
|
||||
<li>Encoder: Renishaw <a href="doc/L-9517-9678-05-A_Data_sheet_VIONiC_series_en.pdf">Vionic</a> and used <a href="doc/L-9517-9862-01-C_Data_sheet_RKLC_EN.pdf">Ruler</a></li>
|
||||
<li>Interferometers: Attocube</li>
|
||||
</ul>
|
||||
|
||||
</div>
|
||||
</div>
|
||||
</div>
|
||||
</div>
|
||||
<div id="postamble" class="status">
|
||||
<p class="author">Author: Dehaeze Thomas</p>
|
||||
<p class="date">Created: 2021-06-07 lun. 19:00</p>
|
||||
</div>
|
||||
</body>
|
||||
</html>
|
58
test-bench-nano-hexapod.org
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test-bench-nano-hexapod.org
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||||
#+TITLE: Nano-Hexapod - Test Bench
|
||||
:DRAWER:
|
||||
#+LANGUAGE: en
|
||||
#+EMAIL: dehaeze.thomas@gmail.com
|
||||
#+AUTHOR: Dehaeze Thomas
|
||||
|
||||
#+HTML_LINK_HOME: ../index.html
|
||||
#+HTML_LINK_UP: ../index.html
|
||||
|
||||
#+HTML_HEAD: <link rel="stylesheet" type="text/css" href="https://research.tdehaeze.xyz/css/style.css"/>
|
||||
#+HTML_HEAD: <script type="text/javascript" src="https://research.tdehaeze.xyz/js/script.js"></script>
|
||||
|
||||
#+BIND: org-latex-image-default-option "scale=1"
|
||||
#+BIND: org-latex-image-default-width ""
|
||||
|
||||
#+LaTeX_CLASS: scrreprt
|
||||
#+LaTeX_CLASS_OPTIONS: [a4paper, 10pt, DIV=12, parskip=full]
|
||||
#+LaTeX_HEADER_EXTRA: \input{preamble.tex}
|
||||
|
||||
#+PROPERTY: header-args:matlab :session *MATLAB*
|
||||
#+PROPERTY: header-args:matlab+ :comments org
|
||||
#+PROPERTY: header-args:matlab+ :exports both
|
||||
#+PROPERTY: header-args:matlab+ :results none
|
||||
#+PROPERTY: header-args:matlab+ :eval no-export
|
||||
#+PROPERTY: header-args:matlab+ :noweb yes
|
||||
#+PROPERTY: header-args:matlab+ :mkdirp yes
|
||||
#+PROPERTY: header-args:matlab+ :output-dir figs
|
||||
|
||||
#+PROPERTY: header-args:latex :headers '("\\usepackage{tikz}" "\\usepackage{import}" "\\import{$HOME/Cloud/tikz/org/}{config.tex}")
|
||||
#+PROPERTY: header-args:latex+ :imagemagick t :fit yes
|
||||
#+PROPERTY: header-args:latex+ :iminoptions -scale 100% -density 150
|
||||
#+PROPERTY: header-args:latex+ :imoutoptions -quality 100
|
||||
#+PROPERTY: header-args:latex+ :results file raw replace
|
||||
#+PROPERTY: header-args:latex+ :buffer no
|
||||
#+PROPERTY: header-args:latex+ :tangle no
|
||||
#+PROPERTY: header-args:latex+ :eval no-export
|
||||
#+PROPERTY: header-args:latex+ :exports results
|
||||
#+PROPERTY: header-args:latex+ :mkdirp yes
|
||||
#+PROPERTY: header-args:latex+ :output-dir figs
|
||||
#+PROPERTY: header-args:latex+ :post pdf2svg(file=*this*, ext="png")
|
||||
:END:
|
||||
|
||||
#+begin_export html
|
||||
<hr>
|
||||
<p>This report is also available as a <a href="./test-bench-nano-hexapod.pdf">pdf</a>.</p>
|
||||
<hr>
|
||||
#+end_export
|
||||
|
||||
* Test-Bench Description
|
||||
|
||||
#+begin_note
|
||||
Here are the documentation of the equipment used for this test bench:
|
||||
- Voltage Amplifier: PiezoDrive [[file:doc/PD200-V7-R1.pdf][PD200]]
|
||||
- Amplified Piezoelectric Actuator: Cedrat [[file:doc/APA300ML.pdf][APA300ML]]
|
||||
- DAC/ADC: Speedgoat [[file:doc/IO131-OEM-Datasheet.pdf][IO313]]
|
||||
- Encoder: Renishaw [[file:doc/L-9517-9678-05-A_Data_sheet_VIONiC_series_en.pdf][Vionic]] and used [[file:doc/L-9517-9862-01-C_Data_sheet_RKLC_EN.pdf][Ruler]]
|
||||
- Interferometers: Attocube
|
||||
#+end_note
|
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