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1 function AMT_res = AMT_analysis(Problem, solver)
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2 %%% Automatic Music Transcription results analysis
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3 %
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4 % Centre for Digital Music, Queen Mary, University of London.
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5 % This file copyright 2009 Ivan Damnjanovic.
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6 %
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7 % This program is free software; you can redistribute it and/or
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8 % modify it under the terms of the GNU General Public License as
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9 % published by the Free Software Foundation; either version 2 of the
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10 % License, or (at your option) any later version. See the file
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11 % COPYING included with this distribution for more information.
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12 %
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13 % If wav file that is transcribed is generated from midi file (i.e. if
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14 % groundtruth exists) transcription is comapred to the original notes and
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15 % AMT_res structure is generated. It contains following fields:
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16 % - tp_notes - true positive notes (notes corectly transcribed)
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17 % - oe_notes - octave errors (erroes due to imperfect pitch estimation)
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18 % - fn_notes_wo_oe - false negative notes without octave errors
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19 % (notes that were not detected)
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20 % - fp_notes_wo_oe - false positive notes without octave erors
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21 % - TP - number of true positives
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22 % - FN - number of false negatives
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23 % - FP - number of false positives
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24
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25 timeOr=Problem.notesOriginal(:,5);
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26 noteOr=Problem.notesOriginal(:,3);
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27 timeTr=solver.reconstructed.notes(:,5);
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28 noteTr=solver.reconstructed.notes(:,3);
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29 n=size(timeOr,1);
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30 m=size(timeTr,1);
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31
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32 % tolerance (ts) is set to one window before and after the reference offset
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33 % time
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34
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35 ts=(Problem.windowSize)/Problem.fs;
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36
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37 Hits=[];
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38 OE=[];
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39
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40 for i=1:n
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41 Hit= find((noteTr(:)==noteOr(i))&(abs(timeOr(i)-timeTr(:))<ts));
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42 if size(Hit,1)>1 Hit=Hit(1); end
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43 if ~isempty(Hit) Hits=[Hits; i , Hit];
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44 else
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45 OctErr=find(((noteTr(:)==noteOr(i)-12)|(noteTr(:)==noteOr(i)-24))&(abs(timeOr(i)-timeTr(:))<ts), 1);
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46 if ~isempty(OctErr) OE=[OE; i , OctErr]; end
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47 end
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48 end
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49
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50 AMT_res.tp_notes = [Problem.notesOriginal(Hits(:,1),[3 5]) solver.reconstructed.notes(Hits(:,2),[3 5])];
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51 AMT_res.oe_notes = [Problem.notesOriginal(OE(:,1),[3 5]) solver.reconstructed.notes(OE(:,2),[3 5])];
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52 AMT_res.fn_notes_wo_oe = Problem.notesOriginal(setdiff([1:n],union(Hits(:,1),OE(:,1))),[3 5]);
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53 AMT_res.fp_notes_wo_oe = solver.reconstructed.notes(setdiff([1:m],union(Hits(:,2),OE(:,2))),[3 5]);
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54 AMT_res.TP=size(Hits,1);
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55 AMT_res.FN=n-AMT_res.TP;
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56 AMT_res.FP=m-AMT_res.TP;
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57 end |