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import numpy
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import time, datetime
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from graphics.figure import *
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class CrossSpectraPlot(Figure):
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__isConfig = None
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__nsubplots = None
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WIDTHPROF = None
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HEIGHTPROF = None
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PREFIX = 'spc'
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def __init__(self):
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self.__isConfig = False
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self.__nsubplots = 4
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self.WIDTH = 300
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self.HEIGHT = 400
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self.WIDTHPROF = 0
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self.HEIGHTPROF = 0
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def getSubplots(self):
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ncol = 4
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nrow = self.nplots
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return nrow, ncol
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def setup(self, idfigure, nplots, wintitle, showprofile=True):
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self.__showprofile = showprofile
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self.nplots = nplots
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ncolspan = 1
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colspan = 1
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self.createFigure(idfigure = idfigure,
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wintitle = wintitle,
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widthplot = self.WIDTH + self.WIDTHPROF,
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heightplot = self.HEIGHT + self.HEIGHTPROF)
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nrow, ncol = self.getSubplots()
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counter = 0
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for y in range(nrow):
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for x in range(ncol):
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self.addAxes(nrow, ncol*ncolspan, y, x*ncolspan, colspan, 1)
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counter += 1
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def run(self, dataOut, idfigure, wintitle="", pairsList=None, showprofile='True',
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xmin=None, xmax=None, ymin=None, ymax=None, zmin=None, zmax=None,
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save=False, figpath='./', figfile=None):
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"""
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Input:
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dataOut :
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idfigure :
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wintitle :
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channelList :
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showProfile :
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xmin : None,
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xmax : None,
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ymin : None,
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ymax : None,
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zmin : None,
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zmax : None
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"""
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if pairsList == None:
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pairsIndexList = dataOut.pairsIndexList
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else:
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pairsIndexList = []
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for pair in pairsList:
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if pair not in dataOut.pairsList:
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raise ValueError, "Pair %s is not in dataOut.pairsList" %(pair)
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pairsIndexList.append(dataOut.pairsList.index(pair))
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x = dataOut.getVelRange(1)
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y = dataOut.getHeiRange()
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z = 10.*numpy.log10(dataOut.data_spc[:,:,:])
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avg = numpy.average(numpy.abs(z), axis=1)
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noise = dataOut.getNoise()
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if not self.__isConfig:
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nplots = len(pairsIndexList)
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self.setup(idfigure=idfigure,
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nplots=nplots,
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wintitle=wintitle,
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showprofile=showprofile)
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if xmin == None: xmin = numpy.nanmin(x)
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if xmax == None: xmax = numpy.nanmax(x)
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if ymin == None: ymin = numpy.nanmin(y)
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if ymax == None: ymax = numpy.nanmax(y)
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if zmin == None: zmin = numpy.nanmin(avg)*0.9
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if zmax == None: zmax = numpy.nanmax(avg)*0.9
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self.__isConfig = True
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thisDatetime = datetime.datetime.fromtimestamp(dataOut.utctime)
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title = "Spectra: %s" %(thisDatetime.strftime("%d-%b-%Y %H:%M:%S"))
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xlabel = "Velocity (m/s)"
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ylabel = "Range (Km)"
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self.setWinTitle(title)
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for i in range(self.nplots):
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pair = dataOut.pairsList[pairsIndexList[i]]
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title = "Channel %d: %4.2fdB" %(pair[0], noise[pair[0]])
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z = 10.*numpy.log10(dataOut.data_spc[pair[0],:,:])
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axes0 = self.axesList[i*self.__nsubplots]
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axes0.pcolor(x, y, z,
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xmin=xmin, xmax=xmax, ymin=ymin, ymax=ymax, zmin=zmin, zmax=zmax,
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xlabel=xlabel, ylabel=ylabel, title=title,
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ticksize=9, cblabel='')
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title = "Channel %d: %4.2fdB" %(pair[1], noise[pair[1]])
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z = 10.*numpy.log10(dataOut.data_spc[pair[1],:,:])
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axes0 = self.axesList[i*self.__nsubplots+1]
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axes0.pcolor(x, y, z,
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xmin=xmin, xmax=xmax, ymin=ymin, ymax=ymax, zmin=zmin, zmax=zmax,
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xlabel=xlabel, ylabel=ylabel, title=title,
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ticksize=9, cblabel='')
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coherenceComplex = dataOut.data_cspc[pairsIndexList[i],:,:]/numpy.sqrt(dataOut.data_spc[pair[0],:,:]*dataOut.data_spc[pair[1],:,:])
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coherence = numpy.abs(coherenceComplex)
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phase = numpy.arctan(-1*coherenceComplex.imag/coherenceComplex.real)*180/numpy.pi
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title = "Coherence %d%d" %(pair[0], pair[1])
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axes0 = self.axesList[i*self.__nsubplots+2]
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axes0.pcolor(x, y, coherence,
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xmin=xmin, xmax=xmax, ymin=ymin, ymax=ymax, zmin=-1, zmax=1,
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xlabel=xlabel, ylabel=ylabel, title=title,
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ticksize=9, cblabel='')
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title = "Phase %d%d" %(pair[0], pair[1])
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axes0 = self.axesList[i*self.__nsubplots+3]
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axes0.pcolor(x, y, phase,
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xmin=xmin, xmax=xmax, ymin=ymin, ymax=ymax, zmin=-180, zmax=180,
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xlabel=xlabel, ylabel=ylabel, title=title,
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ticksize=9, cblabel='')
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self.draw()
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if save:
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date = thisDatetime.strftime("%Y%m%d")
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if figfile == None:
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figfile = self.getFilename(name = date)
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self.saveFigure(figpath, figfile)
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class RTIPlot(Figure):
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__isConfig = None
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__nsubplots = None
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WIDTHPROF = None
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HEIGHTPROF = None
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PREFIX = 'rti'
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def __init__(self):
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self.__timerange = 24*60*60
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self.__isConfig = False
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self.__nsubplots = 1
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self.WIDTH = 800
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self.HEIGHT = 200
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self.WIDTHPROF = 120
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self.HEIGHTPROF = 0
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def getSubplots(self):
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ncol = 1
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nrow = self.nplots
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return nrow, ncol
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def setup(self, idfigure, nplots, wintitle, showprofile=True):
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self.__showprofile = showprofile
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self.nplots = nplots
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ncolspan = 1
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colspan = 1
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if showprofile:
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ncolspan = 7
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colspan = 6
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self.__nsubplots = 2
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self.createFigure(idfigure = idfigure,
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wintitle = wintitle,
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widthplot = self.WIDTH + self.WIDTHPROF,
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heightplot = self.HEIGHT + self.HEIGHTPROF)
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nrow, ncol = self.getSubplots()
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counter = 0
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for y in range(nrow):
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for x in range(ncol):
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if counter >= self.nplots:
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break
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self.addAxes(nrow, ncol*ncolspan, y, x*ncolspan, colspan, 1)
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if showprofile:
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self.addAxes(nrow, ncol*ncolspan, y, x*ncolspan+colspan, 1, 1)
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counter += 1
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def __getTimeLim(self, x, xmin, xmax):
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thisdatetime = datetime.datetime.fromtimestamp(numpy.min(x))
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thisdate = datetime.datetime.combine(thisdatetime.date(), datetime.time(0,0,0))
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####################################################
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#If the x is out of xrange
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if xmax < (thisdatetime - thisdate).seconds/(60*60.):
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xmin = None
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xmax = None
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if xmin == None:
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td = thisdatetime - thisdate
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xmin = td.seconds/(60*60.)
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if xmax == None:
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xmax = xmin + self.__timerange/(60*60.)
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mindt = thisdate + datetime.timedelta(0,0,0,0,0, xmin)
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tmin = time.mktime(mindt.timetuple())
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maxdt = thisdate + datetime.timedelta(0,0,0,0,0, xmax)
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tmax = time.mktime(maxdt.timetuple())
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self.__timerange = tmax - tmin
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return tmin, tmax
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def run(self, dataOut, idfigure, wintitle="", channelList=None, showprofile='True',
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xmin=None, xmax=None, ymin=None, ymax=None, zmin=None, zmax=None,
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timerange=None,
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save=False, figpath='./', figfile=None):
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"""
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Input:
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dataOut :
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idfigure :
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wintitle :
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channelList :
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showProfile :
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xmin : None,
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xmax : None,
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ymin : None,
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ymax : None,
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zmin : None,
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zmax : None
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"""
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if channelList == None:
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channelIndexList = dataOut.channelIndexList
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else:
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channelIndexList = []
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for channel in channelList:
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if channel not in dataOut.channelList:
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raise ValueError, "Channel %d is not in dataOut.channelList"
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channelIndexList.append(dataOut.channelList.index(channel))
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if timerange != None:
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self.__timerange = timerange
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tmin = None
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tmax = None
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x = dataOut.getDatatime()
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y = dataOut.getHeiRange()
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z = 10.*numpy.log10(dataOut.data_spc[channelIndexList,:,:])
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avg = numpy.average(z, axis=1)
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noise = dataOut.getNoise()
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if not self.__isConfig:
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nplots = len(channelIndexList)
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self.setup(idfigure=idfigure,
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nplots=nplots,
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wintitle=wintitle,
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showprofile=showprofile)
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tmin, tmax = self.__getTimeLim(x, xmin, xmax)
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if ymin == None: ymin = numpy.nanmin(y)
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if ymax == None: ymax = numpy.nanmax(y)
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if zmin == None: zmin = numpy.nanmin(avg)*0.9
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if zmax == None: zmax = numpy.nanmax(avg)*0.9
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self.__isConfig = True
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thisDatetime = datetime.datetime.fromtimestamp(dataOut.utctime)
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title = "RTI: %s" %(thisDatetime.strftime("%d-%b-%Y"))
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xlabel = "Velocity (m/s)"
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ylabel = "Range (Km)"
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self.setWinTitle(title)
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for i in range(self.nplots):
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title = "Channel %d: %s" %(dataOut.channelList[i], thisDatetime.strftime("%d-%b-%Y %H:%M:%S"))
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axes = self.axesList[i*self.__nsubplots]
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z = avg[i].reshape((1,-1))
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axes.pcolor(x, y, z,
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xmin=tmin, xmax=tmax, ymin=ymin, ymax=ymax, zmin=zmin, zmax=zmax,
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xlabel=xlabel, ylabel=ylabel, title=title, rti=True, XAxisAsTime=True,
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ticksize=9, cblabel='', cbsize="1%")
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if self.__showprofile:
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axes = self.axesList[i*self.__nsubplots +1]
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axes.pline(avg[i], y,
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xmin=zmin, xmax=zmax, ymin=ymin, ymax=ymax,
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xlabel='dB', ylabel='', title='',
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ytick_visible=False,
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grid='x')
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self.draw()
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if save:
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date = thisDatetime.strftime("%Y%m%d")
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if figfile == None:
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figfile = self.getFilename(name = date)
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self.saveFigure(figpath, figfile)
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if x[1] + (x[1]-x[0]) >= self.axesList[0].xmax:
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self.__isConfig = False
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class SpectraPlot(Figure):
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__isConfig = None
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__nsubplots = None
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WIDTHPROF = None
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HEIGHTPROF = None
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PREFIX = 'spc'
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def __init__(self):
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self.__isConfig = False
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self.__nsubplots = 1
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self.WIDTH = 300
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self.HEIGHT = 400
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self.WIDTHPROF = 120
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self.HEIGHTPROF = 0
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def getSubplots(self):
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ncol = int(numpy.sqrt(self.nplots)+0.9)
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nrow = int(self.nplots*1./ncol + 0.9)
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return nrow, ncol
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def setup(self, idfigure, nplots, wintitle, showprofile=True):
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self.__showprofile = showprofile
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self.nplots = nplots
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ncolspan = 1
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colspan = 1
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if showprofile:
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ncolspan = 3
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colspan = 2
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self.__nsubplots = 2
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self.createFigure(idfigure = idfigure,
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wintitle = wintitle,
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widthplot = self.WIDTH + self.WIDTHPROF,
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heightplot = self.HEIGHT + self.HEIGHTPROF)
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nrow, ncol = self.getSubplots()
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counter = 0
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for y in range(nrow):
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for x in range(ncol):
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if counter >= self.nplots:
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break
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self.addAxes(nrow, ncol*ncolspan, y, x*ncolspan, colspan, 1)
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if showprofile:
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self.addAxes(nrow, ncol*ncolspan, y, x*ncolspan+colspan, 1, 1)
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counter += 1
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def run(self, dataOut, idfigure, wintitle="", channelList=None, showprofile='True',
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xmin=None, xmax=None, ymin=None, ymax=None, zmin=None, zmax=None,
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save=False, figpath='./', figfile=None):
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"""
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Input:
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dataOut :
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idfigure :
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wintitle :
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channelList :
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showProfile :
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xmin : None,
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xmax : None,
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ymin : None,
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ymax : None,
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zmin : None,
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zmax : None
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"""
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if channelList == None:
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channelIndexList = dataOut.channelIndexList
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else:
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channelIndexList = []
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for channel in channelList:
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if channel not in dataOut.channelList:
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raise ValueError, "Channel %d is not in dataOut.channelList"
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channelIndexList.append(dataOut.channelList.index(channel))
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x = dataOut.getVelRange(1)
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y = dataOut.getHeiRange()
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z = 10.*numpy.log10(dataOut.data_spc[channelIndexList,:,:])
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avg = numpy.average(z, axis=1)
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noise = dataOut.getNoise()
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if not self.__isConfig:
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nplots = len(channelIndexList)
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self.setup(idfigure=idfigure,
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nplots=nplots,
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wintitle=wintitle,
|
|
|
showprofile=showprofile)
|
|
|
|
|
|
if xmin == None: xmin = numpy.nanmin(x)
|
|
|
if xmax == None: xmax = numpy.nanmax(x)
|
|
|
if ymin == None: ymin = numpy.nanmin(y)
|
|
|
if ymax == None: ymax = numpy.nanmax(y)
|
|
|
if zmin == None: zmin = numpy.nanmin(avg)*0.9
|
|
|
if zmax == None: zmax = numpy.nanmax(avg)*0.9
|
|
|
|
|
|
self.__isConfig = True
|
|
|
|
|
|
thisDatetime = datetime.datetime.fromtimestamp(dataOut.utctime)
|
|
|
title = "Spectra: %s" %(thisDatetime.strftime("%d-%b-%Y %H:%M:%S"))
|
|
|
xlabel = "Velocity (m/s)"
|
|
|
ylabel = "Range (Km)"
|
|
|
|
|
|
self.setWinTitle(title)
|
|
|
|
|
|
for i in range(self.nplots):
|
|
|
title = "Channel %d: %4.2fdB" %(dataOut.channelList[i], noise[i])
|
|
|
axes = self.axesList[i*self.__nsubplots]
|
|
|
axes.pcolor(x, y, z[i,:,:],
|
|
|
xmin=xmin, xmax=xmax, ymin=ymin, ymax=ymax, zmin=zmin, zmax=zmax,
|
|
|
xlabel=xlabel, ylabel=ylabel, title=title,
|
|
|
ticksize=9, cblabel='')
|
|
|
|
|
|
if self.__showprofile:
|
|
|
axes = self.axesList[i*self.__nsubplots +1]
|
|
|
axes.pline(avg[i], y,
|
|
|
xmin=zmin, xmax=zmax, ymin=ymin, ymax=ymax,
|
|
|
xlabel='dB', ylabel='', title='',
|
|
|
ytick_visible=False,
|
|
|
grid='x')
|
|
|
|
|
|
self.draw()
|
|
|
|
|
|
if save:
|
|
|
date = thisDatetime.strftime("%Y%m%d")
|
|
|
if figfile == None:
|
|
|
figfile = self.getFilename(name = date)
|
|
|
|
|
|
self.saveFigure(figpath, figfile)
|
|
|
|
|
|
class Scope(Figure):
|
|
|
|
|
|
__isConfig = None
|
|
|
|
|
|
def __init__(self):
|
|
|
|
|
|
self.__isConfig = False
|
|
|
self.WIDTH = 600
|
|
|
self.HEIGHT = 200
|
|
|
|
|
|
def getSubplots(self):
|
|
|
|
|
|
nrow = self.nplots
|
|
|
ncol = 3
|
|
|
return nrow, ncol
|
|
|
|
|
|
def setup(self, idfigure, nplots, wintitle):
|
|
|
|
|
|
self.createFigure(idfigure, wintitle)
|
|
|
|
|
|
nrow,ncol = self.getSubplots()
|
|
|
colspan = 3
|
|
|
rowspan = 1
|
|
|
|
|
|
for i in range(nplots):
|
|
|
self.addAxes(nrow, ncol, i, 0, colspan, rowspan)
|
|
|
|
|
|
self.nplots = nplots
|
|
|
|
|
|
def run(self, dataOut, idfigure, wintitle="", channelList=None,
|
|
|
xmin=None, xmax=None, ymin=None, ymax=None, save=False, filename=None):
|
|
|
|
|
|
"""
|
|
|
|
|
|
Input:
|
|
|
dataOut :
|
|
|
idfigure :
|
|
|
wintitle :
|
|
|
channelList :
|
|
|
xmin : None,
|
|
|
xmax : None,
|
|
|
ymin : None,
|
|
|
ymax : None,
|
|
|
"""
|
|
|
|
|
|
if channelList == None:
|
|
|
channelIndexList = dataOut.channelIndexList
|
|
|
else:
|
|
|
channelIndexList = []
|
|
|
for channel in channelList:
|
|
|
if channel not in dataOut.channelList:
|
|
|
raise ValueError, "Channel %d is not in dataOut.channelList"
|
|
|
channelIndexList.append(dataOut.channelList.index(channel))
|
|
|
|
|
|
x = dataOut.heightList
|
|
|
y = dataOut.data[channelList,:] * numpy.conjugate(dataOut.data[channelList,:])
|
|
|
y = y.real
|
|
|
|
|
|
noise = dataOut.getNoise()
|
|
|
|
|
|
if not self.__isConfig:
|
|
|
nplots = len(channelList)
|
|
|
|
|
|
self.setup(idfigure=idfigure,
|
|
|
nplots=nplots,
|
|
|
wintitle=wintitle)
|
|
|
|
|
|
if xmin == None: xmin = numpy.nanmin(x)
|
|
|
if xmax == None: xmax = numpy.nanmax(x)
|
|
|
if ymin == None: ymin = numpy.nanmin(y)
|
|
|
if ymax == None: ymax = numpy.nanmax(y)
|
|
|
|
|
|
self.__isConfig = True
|
|
|
|
|
|
|
|
|
thisDatetime = datetime.datetime.fromtimestamp(dataOut.utctime)
|
|
|
title = "Scope: %s" %(thisDatetime.strftime("%d-%b-%Y %H:%M:%S"))
|
|
|
xlabel = "Range (Km)"
|
|
|
ylabel = "Intensity"
|
|
|
|
|
|
self.setWinTitle(title)
|
|
|
|
|
|
for i in range(len(self.axesList)):
|
|
|
title = "Channel %d: %4.2fdB" %(i, noise[i])
|
|
|
axes = self.axesList[i]
|
|
|
ychannel = y[i,:]
|
|
|
axes.pline(x, ychannel,
|
|
|
xmin=xmin, xmax=xmax, ymin=ymin, ymax=ymax,
|
|
|
xlabel=xlabel, ylabel=ylabel, title=title)
|
|
|
|
|
|
self.draw()
|
|
|
|
|
|
if save:
|
|
|
self.saveFigure(filename)
|
|
|
|