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1 | import h5py | |||
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2 | import numpy | |||
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3 | import matplotlib.pyplot as plt | |||
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4 | import glob | |||
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5 | import os | |||
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6 | ||||
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7 | #---------------------- Functions --------------------- | |||
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8 | ||||
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9 | def findFiles(path): | |||
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10 | ||||
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11 | dirList = [] | |||
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12 | fileList = [] | |||
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13 | ||||
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14 | for thisPath in os.listdir(path): | |||
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15 | dirList.append(os.path.join(path,thisPath)) | |||
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16 | dirList.sort() | |||
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17 | ||||
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18 | for thisDirectory in dirList: | |||
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19 | files = glob.glob1(thisDirectory, "*.hdf5") | |||
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20 | files.sort() | |||
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21 | for thisFile in files: | |||
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22 | fileList.append(os.path.join(thisDirectory,thisFile)) | |||
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23 | ||||
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24 | return fileList | |||
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25 | ||||
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26 | def readFiles(fileList): | |||
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27 | ||||
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28 | meteors_array = numpy.zeros((1,4)) | |||
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29 | ||||
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30 | for thisFile in fileList: | |||
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31 | ||||
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32 | #Leer | |||
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33 | f1 = h5py.File(thisFile,'r') | |||
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34 | grp1 = f1['Data'] | |||
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35 | grp2 = grp1['data_output'] | |||
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36 | meteors1 = grp2['table0'][:] | |||
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37 | meteors_array = numpy.vstack((meteors_array,meteors1)) | |||
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38 | #cerrar | |||
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39 | f1.close() | |||
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40 | ||||
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41 | meteors_array = numpy.delete(meteors_array, 0, axis=0) | |||
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42 | meteors_list = [meteors_array[:,0],meteors_array[:,1],meteors_array[:,2],meteors_array[:,3]] | |||
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43 | return meteors_list | |||
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44 | ||||
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45 | def estimateMean(offset_list): | |||
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46 | ||||
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47 | mean_off = [] | |||
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48 | axisY_off = [] | |||
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49 | axisX_off = [] | |||
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50 | ||||
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51 | for thisOffset in offset_list: | |||
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52 | mean_aux = numpy.mean(thisOffset, axis = 0) | |||
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53 | mean_off.append(mean_aux) | |||
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54 | axisX_off.append(numpy.array([0,numpy.size(thisOffset)])) | |||
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55 | axisY_off.append(numpy.array([mean_aux,mean_aux])) | |||
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56 | ||||
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57 | return mean_off, axisY_off, axisX_off | |||
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58 | ||||
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59 | def plotPhases(offset0, axisY0, axisX0, title): | |||
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60 | f, axarr = plt.subplots(4, sharey=True) | |||
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61 | color = ['b','g','r','c'] | |||
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62 | # plt.grid() | |||
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63 | for i in range(len(offset0)): | |||
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64 | thisMeteor = offset0[i] | |||
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65 | thisY = axisY0[i] | |||
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66 | thisX = axisX0[i] | |||
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67 | thisColor = color[i] | |||
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68 | ||||
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69 | opt = thisColor + 'o' | |||
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70 | axarr[i].plot(thisMeteor,opt) | |||
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71 | axarr[i].plot(thisX, thisY, thisColor) | |||
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72 | axarr[i].set_ylabel('Offset ' + str(i)) | |||
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73 | ||||
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74 | plt.ylim((-180,180)) | |||
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75 | axarr[0].set_title(title + ' Offsets') | |||
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76 | axarr[3].set_xlabel('Number of estimations') | |||
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77 | ||||
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78 | return | |||
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79 | ||||
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80 | def filterOffsets(offsets0, stdvLimit): | |||
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81 | offsets1 = [] | |||
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82 | ||||
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83 | for thisOffset in offsets0: | |||
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84 | pstd = numpy.std(thisOffset)*stdvLimit | |||
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85 | pmean = numpy.mean(thisOffset) | |||
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86 | outlier1 = thisOffset > pmean - pstd | |||
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87 | outlier2 = thisOffset < pmean + pstd | |||
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88 | not_outlier = numpy.logical_and(outlier1,outlier2) | |||
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89 | thisOffset1 = thisOffset[not_outlier] | |||
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90 | offsets1.append(thisOffset1) | |||
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91 | ||||
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92 | return offsets1 | |||
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93 | ||||
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94 | #---------------------- Setup --------------------------- | |||
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95 | ||||
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96 | path = '/home/jespinoza/Pictures/JASMET30/201608/phase' | |||
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97 | stdvLimit = 0.5 | |||
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98 | ||||
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99 | #---------------------- Script --------------------------- | |||
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100 | ||||
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101 | fileList = findFiles(path) | |||
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102 | offsets0 = readFiles(fileList) | |||
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103 | mean0, axisY0, axisX0 = estimateMean(offsets0) | |||
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104 | plotPhases(offsets0, axisY0, axisX0, 'Original') | |||
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105 | ||||
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106 | offsets1 = filterOffsets(offsets0, stdvLimit) | |||
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107 | mean1, axisY1, axisX1 = estimateMean(offsets1) | |||
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108 | plotPhases(offsets1, axisY1, axisX1, 'Filtered') | |||
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109 | ||||
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110 | print "Original Offsets: %.2f, %.2f, %.2f, %.2f" % (mean0[0],mean0[1],mean0[2],mean0[3]) | |||
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111 | print "Filtered Offsets: %.2f, %.2f, %.2f, %.2f" % (mean1[0],mean1[1],mean1[2],mean1[3]) | |||
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112 | ||||
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113 | plt.show() |
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