root / tmp / org.txm.analec.rcp / src / JamaPlus / AFC.java @ 1733
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/*
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* To change this template, choose Tools | Templates
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* and open the template in the editor.
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*/
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package JamaPlus; |
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/**
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*
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* AFC analyse factorielle des correspondances (optimisé mémoire)
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* mat : matrice binaire (0. ou 1.) profil des lignes (un individu par ligne, un caractère par colonne)
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* CP: composantes principales,
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* VP: valeurs d'inertie,
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* CG: centres de gravité des CP contenant un même caractère (non calculé dans cette version)
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* [p,q] = size(mat); p:nb de lignes, q:nb de col
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*
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* @author Bernard
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*/
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public class AFC { |
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private double[][] CP; |
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private double[] VP; |
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private int p, q, n; |
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AFC(Matrix Arg) {
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Matrix mat = Arg.copy(); |
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mat = mat.nulColumnSuppression(); |
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p = mat.getRowDimension(); |
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q = mat.getColumnDimension(); |
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n = Math.min(Math.min(p, q), 5); // n : nombre de composantes principales calculées |
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if (n == 0) return; |
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if (n == 1) { |
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CP = new double[p][1]; |
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VP = new double[1]; |
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return;
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} |
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double f = mat.elementSum();
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if (f == 0) return; |
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mat = mat.timesEquals(1 / f);
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Matrix r = mat.lineSum(); |
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Matrix r1 = r.arrayInverse(); |
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Matrix r2 = r.arraySqrt(); |
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Matrix r3 = r2.arrayInverse(); |
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Matrix c = mat.columnSum(); |
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Matrix c1 = c.arrayInverse(); |
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Matrix c2 = c.arraySqrt(); |
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Matrix c3 = c2.arrayInverse(); |
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mat = mat.firstColumnTimesEqual(r3); |
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mat = mat.firstLineTimesEqual(c3); |
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SingularValueDecomposition svd = mat.svd(); |
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Matrix cp = svd.getU(); |
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Matrix vp = new Matrix(svd.getSingularValues(), 1); |
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cp = cp.getMatrix(0, p - 1, 1, n - 1); |
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cp = cp.firstColumnTimesEqual(r2); |
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vp = vp.getMatrix(0, 0, 1, n - 1); |
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cp = cp.firstLineTimesEqual(vp); |
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cp.fixColumnSigns(); |
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cp = cp.firstColumnTimesEqual(r1); |
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CP = cp.getArray(); |
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VP = vp.getColumnPackedCopy(); |
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} |
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public Matrix getCP() {
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if (CP == null) return null; |
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return new Matrix(CP, p, n - 1); |
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} |
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public double[] getVP() { |
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return VP;
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} |
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} |