BoxCox transformation; Particionamento de Huarng, implementação inicial
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@ -9,12 +9,6 @@ import Measures
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from pyFTS.partitioners import Grid
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from pyFTS.common import Membership,FuzzySet,FLR,Transformations
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def Teste(par):
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x = np.arange(1,par)
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y = [ yy**yy for yyy in x]
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plt.plot(x,y)
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def getIntervalStatistics(original,models):
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ret = "Model & RMSE & MAPE & Sharpness & Resolution & Coverage \\ \n"
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for fts in models:
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@ -126,8 +120,8 @@ def plotCompared(original,forecasts,labels,title):
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fig = plt.figure(figsize=[13,6])
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ax = fig.add_subplot(111)
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ax.plot(original,color='k',label="Original")
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for c in range(0,len(forecasted)):
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ax.plot(forecasted[c],label=labels[c])
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for c in range(0,len(forecasts)):
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ax.plot(forecasts[c],label=labels[c])
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handles0, labels0 = ax.get_legend_handles_labels()
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ax.legend(handles0,labels0)
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ax.set_title(title)
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@ -1,8 +1,19 @@
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import numpy as np
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import math
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from pyFTS import *
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def differential(original):
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n = len(original)
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diff = [ original[t-1]-original[t] for t in np.arange(1,n) ]
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diff.insert(0,0)
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return np.array(diff)
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diff = [original[t - 1] - original[t] for t in np.arange(1, n)]
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diff.insert(0, 0)
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return np.array(diff)
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def boxcox(original, plambda):
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n = len(original)
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if plambda != 0:
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modified = [(original[t] ** plambda - 1) / plambda for t in np.arange(0, n)]
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else:
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modified = [math.log(original[t]) for t in np.arange(0, n)]
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return np.array(modified)
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34
partitioners/Huarng.py
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34
partitioners/Huarng.py
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@ -0,0 +1,34 @@
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import numpy as np
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import math
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import random as rnd
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import functools,operator
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from pyFTS.common import FuzzySet,Membership,Transformations
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#print(common.__dict__)
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def GridPartitionerTrimf(data,npart,names = None,prefix = "A"):
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data2 = Transformations.differential(data)
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davg = np.mean(data2)/2
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if davg <= 1.0:
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base = 0.1
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elif davg > 1 and davg <= 10:
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base = 1.0
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elif davg > 10 and davg <= 100:
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base = 10
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else:
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base = 100
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sets = []
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dmax = max(data)
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dmax = dmax + dmax*0.10
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dmin = min(data)
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dmin = dmin - dmin*0.10
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dlen = dmax - dmin
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partlen = math.ceil(dlen / npart)
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partition = math.ceil(dmin)
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for c in range(npart):
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sets.append(FuzzySet(prefix+str(c),Membership.trimf,[round(partition-partlen,3), partition, partition+partlen], partition ) )
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partition = partition + partlen
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return sets
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