@@ -274,7 +274,7 class RTIPlot(Plot): | |||||
274 | self.nrows = len(self.data.channels) |
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274 | self.nrows = len(self.data.channels) | |
275 | self.nplots = len(self.data.channels) |
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275 | self.nplots = len(self.data.channels) | |
276 | self.ylabel = 'Range [km]' |
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276 | self.ylabel = 'Range [km]' | |
277 | self.xlabel = 'Time' |
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277 | #self.xlabel = 'Time' | |
278 | self.cb_label = 'dB' |
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278 | self.cb_label = 'dB' | |
279 | self.plots_adjust.update({'hspace':0.8, 'left': 0.08, 'bottom': 0.2, 'right':0.94}) |
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279 | self.plots_adjust.update({'hspace':0.8, 'left': 0.08, 'bottom': 0.2, 'right':0.94}) | |
280 | self.titles = ['{} Channel {}'.format( |
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280 | self.titles = ['{} Channel {}'.format( | |
@@ -342,6 +342,8 class RTIPlot(Plot): | |||||
342 | data = self.data[-1] |
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342 | data = self.data[-1] | |
343 |
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343 | |||
344 | if ax.firsttime: |
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344 | if ax.firsttime: | |
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345 | if (n+1) == len(self.channelList): | |||
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346 | ax.set_xlabel('Time') | |||
345 | ax.plt = ax.pcolormesh(x, y, z[n].T, |
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347 | ax.plt = ax.pcolormesh(x, y, z[n].T, | |
346 | vmin=self.zmin, |
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348 | vmin=self.zmin, | |
347 | vmax=self.zmax, |
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349 | vmax=self.zmax, | |
@@ -380,7 +382,7 class CoherencePlot(RTIPlot): | |||||
380 | self.nrows = len(self.data.pairs) |
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382 | self.nrows = len(self.data.pairs) | |
381 | self.nplots = len(self.data.pairs) |
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383 | self.nplots = len(self.data.pairs) | |
382 | self.ylabel = 'Range [km]' |
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384 | self.ylabel = 'Range [km]' | |
383 | self.xlabel = 'Time' |
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385 | #self.xlabel = 'Time' | |
384 | self.plots_adjust.update({'hspace':0.6, 'left': 0.1, 'bottom': 0.1,'right':0.95}) |
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386 | self.plots_adjust.update({'hspace':0.6, 'left': 0.1, 'bottom': 0.1,'right':0.95}) | |
385 | if self.CODE == 'coh': |
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387 | if self.CODE == 'coh': | |
386 | self.cb_label = '' |
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388 | self.cb_label = '' | |
@@ -419,6 +421,8 class CoherencePlot(RTIPlot): | |||||
419 | self.zmin = self.zmin if self.zmin else numpy.min(self.z) |
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421 | self.zmin = self.zmin if self.zmin else numpy.min(self.z) | |
420 | self.zmax = self.zmax if self.zmax else numpy.max(self.z) |
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422 | self.zmax = self.zmax if self.zmax else numpy.max(self.z) | |
421 | if ax.firsttime: |
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423 | if ax.firsttime: | |
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424 | if (n+1) == len(self.channelList): | |||
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425 | ax.set_xlabel('Time') | |||
422 | ax.plt = ax.pcolormesh(x, y, z[n].T, |
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426 | ax.plt = ax.pcolormesh(x, y, z[n].T, | |
423 | vmin=self.zmin, |
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427 | vmin=self.zmin, | |
424 | vmax=self.zmax, |
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428 | vmax=self.zmax, | |
@@ -1041,7 +1045,7 class NoiselessRTIPlot(RTIPlot): | |||||
1041 | self.nrows = len(self.data.channels) |
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1045 | self.nrows = len(self.data.channels) | |
1042 | self.nplots = len(self.data.channels) |
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1046 | self.nplots = len(self.data.channels) | |
1043 | self.ylabel = 'Range [km]' |
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1047 | self.ylabel = 'Range [km]' | |
1044 | self.xlabel = 'Time' |
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1048 | #self.xlabel = 'Time' | |
1045 | self.cb_label = 'dB' |
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1049 | self.cb_label = 'dB' | |
1046 | self.plots_adjust.update({'hspace':0.8, 'left': 0.08, 'bottom': 0.2, 'right':0.94}) |
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1050 | self.plots_adjust.update({'hspace':0.8, 'left': 0.08, 'bottom': 0.2, 'right':0.94}) | |
1047 | self.titles = ['{} Channel {}'.format( |
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1051 | self.titles = ['{} Channel {}'.format( | |
@@ -1119,6 +1123,8 class NoiselessRTIPlot(RTIPlot): | |||||
1119 | self.zmax = self.zmax if self.zmax else numpy.max(self.z) |
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1123 | self.zmax = self.zmax if self.zmax else numpy.max(self.z) | |
1120 | data = self.data[-1] |
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1124 | data = self.data[-1] | |
1121 | if ax.firsttime: |
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1125 | if ax.firsttime: | |
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1126 | if (n+1) == len(self.channelList): | |||
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1127 | ax.set_xlabel('Time') | |||
1122 | ax.plt = ax.pcolormesh(x, y, z[n].T, |
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1128 | ax.plt = ax.pcolormesh(x, y, z[n].T, | |
1123 | vmin=self.zmin, |
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1129 | vmin=self.zmin, | |
1124 | vmax=self.zmax, |
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1130 | vmax=self.zmax, |
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