Debuged and cleaned source code
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@ -17,8 +17,6 @@ autoregressive prediction: application ot local and regional distances, Geophys.
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"""
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import numpy as np
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from obspy.core import Stream
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import pdb
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import matplotlib.pyplot as plt
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class CharacteristicFunction(object):
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'''
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@ -235,7 +233,7 @@ class AICcf(CharacteristicFunction):
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cf[ff] = 0
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self.cf = cf - np.mean(cf)
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self.xcf = xnp
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self.xcf = x
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class HOScf(CharacteristicFunction):
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@ -287,7 +285,7 @@ class HOScf(CharacteristicFunction):
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if len(nn) > 1:
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LTA[nn] = 0
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self.cf = LTA
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self.xcf = xnp
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self.xcf = x
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class ARZcf(CharacteristicFunction):
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@ -326,7 +324,7 @@ class ARZcf(CharacteristicFunction):
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if len(nn) > 1:
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cf[nn] = 0
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self.cf = cf
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self.xcf = xnp
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self.xcf = x
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def arDetZ(self, data, order, rind, ldet):
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'''
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@ -431,7 +429,7 @@ class ARHcf(CharacteristicFunction):
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ldet = int(round(self.getTime1() / self.getIncrement())) #length of AR-determination window [samples]
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lpred = int(np.ceil(self.getTime2() / self.getIncrement())) #length of AR-prediction window [samples]
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cf = np.zeros(tend - lpred + 1)
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cf = np.zeros(len(xenoise))
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loopstep = self.getARdetStep()
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arcalci = ldet + self.getOrder() - 1 #AR-calculation index
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for i in range(ldet + self.getOrder() - 1, tend - 2 * lpred + 1):
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@ -563,7 +561,7 @@ class AR3Ccf(CharacteristicFunction):
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ldet = int(round(self.getTime1() / self.getIncrement())) #length of AR-determination window [samples]
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lpred = int(np.ceil(self.getTime2() / self.getIncrement())) #length of AR-prediction window [samples]
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cf = np.zeros(tend - lpred + 1)
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cf = np.zeros(len(xenoise))
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loopstep = self.getARdetStep()
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arcalci = ldet + self.getOrder() - 1 #AR-calculation index
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for i in range(ldet + self.getOrder() - 1, tend - 2 * lpred + 1):
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