RDN.py 3.1 KB

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  1. # -*- coding: utf-8 -*-
  2. from define import *
  3. from statistics import mean
  4. import math
  5. def mult(Addresse,Neuronne, poids):
  6. res = mean([Neuronne[Addresse[0]] , \
  7. Neuronne[Addresse[1]] , \
  8. Neuronne[Addresse[2]] , \
  9. Neuronne[Addresse[3]] , \
  10. Neuronne[Addresse[4]] , \
  11. Neuronne[Addresse[5]] , \
  12. Neuronne[Addresse[6]] , \
  13. Neuronne[Addresse[7]] , \
  14. Neuronne[Addresse[8]] , \
  15. Neuronne[Addresse[9]] , \
  16. Neuronne[Addresse[10]] , \
  17. Neuronne[Addresse[11]] , \
  18. Neuronne[Addresse[12]] , \
  19. Neuronne[Addresse[13]] , \
  20. Neuronne[Addresse[14]] , \
  21. Neuronne[Addresse[15]] , \
  22. Neuronne[Addresse[16]] , \
  23. Neuronne[Addresse[17]] , \
  24. Neuronne[Addresse[18]] , \
  25. Neuronne[Addresse[19]] , \
  26. Neuronne[Addresse[20]] , \
  27. Neuronne[Addresse[21]] , \
  28. Neuronne[Addresse[22]] , \
  29. Neuronne[Addresse[23]] , \
  30. Neuronne[Addresse[24]] , \
  31. Neuronne[Addresse[25]] , \
  32. Neuronne[Addresse[26]] , \
  33. Neuronne[Addresse[27]] , \
  34. Neuronne[Addresse[28]] , \
  35. Neuronne[Addresse[29]] , \
  36. Neuronne[Addresse[30]] ])
  37. res = res * poids
  38. res = 1.7159*math.atan( 0.66666667*(res))
  39. #print (res)
  40. return res
  41. # Fonction d'initialisation du reseau de neuronne
  42. class RDN():
  43. def __init__(self,ID):
  44. self.ID = ID
  45. self.C1 = [0]*NBC1
  46. self.C2 = [0]*NBC2
  47. self.C3 = [0]*NBC3
  48. self.C4 = [0]*NBC4
  49. self.C5 = [0]*NBC5
  50. path = D_file + str(self.ID) + "/"
  51. #changer les addresse des fichier des poids avec l'ID
  52. F_add2=open(path + "Addresse2.pos","r")
  53. F_add3=open(path + "Addresse3.pos","r")
  54. F_add4=open(path + "Addresse4.pos","r")
  55. F_add5=open(path + "Addresse5.pos","r")
  56. F_Poid2=open(path + "poids2.wei","r")
  57. F_Poid3=open(path + "poids3.wei","r")
  58. F_Poid4=open(path + "poids4.wei","r")
  59. F_Poid5=open(path + "poids5.wei","r")
  60. self.add2 = []
  61. self.add3 = []
  62. self.add4 = []
  63. self.add5 = []
  64. self.poid2 = []
  65. self.poid3 = []
  66. self.poid4 = []
  67. self.poid5 = []
  68. for i in F_add2:
  69. data = i.strip('][\n').split(', ')
  70. tmp=[]
  71. for j in data:
  72. tmp.append(int(j))
  73. self.add2.append(tmp)
  74. for i in F_add3:
  75. data = i.strip('][\n').split(', ')
  76. tmp=[]
  77. for j in data:
  78. tmp.append(int(j))
  79. self.add3.append(tmp)
  80. for i in F_add4:
  81. data = i.strip('][\n').split(', ')
  82. tmp=[]
  83. for j in data:
  84. tmp.append(int(j))
  85. self.add4.append(tmp)
  86. for i in F_add5:
  87. data = i.strip('][\n').split(', ')
  88. tmp=[]
  89. for j in data:
  90. tmp.append(int(j))
  91. self.add5.append(tmp)
  92. for i in F_Poid2:
  93. self.poid2.append(float(i))
  94. for i in F_Poid3:
  95. self.poid3.append(float(i))
  96. for i in F_Poid4:
  97. self.poid4.append(float(i))
  98. for i in F_Poid5:
  99. self.poid5.append(float(i))
  100. def MiseAJourC1(self,tab):
  101. self.C1 = tab
  102. def tour(self):
  103. for i in range(len(self.C2)):
  104. self.C2[i]=mult(self.add2[i],self.C1,self.poid2[i])
  105. for i in range(len(self.C3)):
  106. self.C3[i]=mult(self.add3[i],self.C2,self.poid3[i])
  107. for i in range(len(self.C4)):
  108. self.C4[i]=mult(self.add4[i],self.C3,self.poid4[i])
  109. for i in range(len(self.C5)):
  110. self.C5[i]=mult(self.add5[i],self.C4,self.poid5[i])
  111. return self.C5