RecedingHorizonControl.py 7.3 KB

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  1. #!/usr/bin/env python
  2. import time
  3. from datetime import datetime as dt
  4. from datetime import timedelta
  5. import pytz
  6. from aman.config.RHC import RHC
  7. from aman.sys.RecedingHorizonWindow import RecedingHorizonWindow
  8. from aman.types.Inbound import Inbound
  9. class RecedingHorizonControl:
  10. def __init__(self, config : RHC):
  11. self.Windows = []
  12. # contains the current index and the missed update counter
  13. self.AssignedWindow = {}
  14. self.Configuration = config
  15. self.FreezedIndex = int(self.Configuration.FixedBeforeArrival.seconds / self.Configuration.WindowSize)
  16. def insertInWindow(self, inbound : Inbound, usePTA : bool):
  17. if False == usePTA:
  18. referenceTime = inbound.InitialArrivalTime
  19. else:
  20. referenceTime = inbound.PlannedArrivalTime
  21. inserted = False
  22. for i in range(0, len(self.Windows)):
  23. window = self.Windows[i]
  24. # find the correct window
  25. if window.StartTime <= referenceTime and window.EndTime > referenceTime:
  26. self.AssignedWindow[inbound.Callsign] = [ i, 0 ]
  27. inbound.FixedSequence = i < self.FreezedIndex
  28. if True == inbound.FixedSequence and None == inbound.PlannedArrivalTime:
  29. inbound.PlannedArrivalTime = inbound.InitialArrivalTime
  30. window.insert(inbound)
  31. inserted = True
  32. break
  33. # create the new window
  34. if False == inserted:
  35. if 0 != len(self.Windows):
  36. lastWindowTime = self.Windows[-1].EndTime
  37. else:
  38. lastWindowTime = dt.utcfromtimestamp(int(time.time())).replace(tzinfo = pytz.UTC)
  39. timestep = timedelta(seconds = self.Configuration.WindowSize)
  40. while True:
  41. self.Windows.append(RecedingHorizonWindow(lastWindowTime, lastWindowTime + timestep))
  42. if self.Windows[-1].EndTime > referenceTime:
  43. window = self.Windows[-1]
  44. window.insert(inbound)
  45. self.AssignedWindow[inbound.Callsign] = [ len(self.Windows) - 1, 0 ]
  46. inbound.FixedSequence = len(self.Windows) < self.FreezedIndex
  47. if True == inbound.FixedSequence and None == inbound.PlannedArrivalTime:
  48. inbound.PlannedArrivalTime = inbound.InitialArrivalTime
  49. break
  50. lastWindowTime = self.Windows[-1].EndTime
  51. window.Inbounds.sort(key = lambda x: x.PlannedArrivalTime if None != x.PlannedArrivalTime else x.InitialArrivalTime)
  52. def updateReport(self, inbound : Inbound):
  53. # check if we need to update
  54. if inbound.Callsign in self.AssignedWindow:
  55. index = self.AssignedWindow[inbound.Callsign][0]
  56. self.AssignedWindow[inbound.Callsign][1] = 0
  57. plannedInbound = self.Windows[index].inbound(inbound.Callsign)
  58. plannedInbound.CurrentPosition = inbound.CurrentPosition
  59. # ingore fixed updates
  60. if True == plannedInbound.FixedSequence or index < self.FreezedIndex:
  61. return
  62. plannedInbound.WTC = inbound.WTC
  63. # check if we need to update the inbound
  64. if None == plannedInbound.PlannedStar:
  65. if inbound.InitialArrivalTime < self.Windows[index].StartTime or inbound.InitialArrivalTime >= self.Windows[index].EndTime:
  66. self.Windows[index].remove(inbound.Callsign)
  67. self.AssignedWindow.pop(inbound.Callsign)
  68. self.updateReport(inbound)
  69. else:
  70. plannedInbound.InitialArrivalTime = inbound.InitialArrivalTime
  71. else:
  72. self.insertInWindow(inbound, False)
  73. def resequenceInbound(self, inbound : Inbound):
  74. index = self.AssignedWindow[inbound.Callsign][0]
  75. if inbound.PlannedArrivalTime < self.Windows[index].StartTime or inbound.PlannedArrivalTime >= self.Windows[index].EndTime:
  76. self.Windows[index].remove(inbound.Callsign)
  77. self.AssignedWindow.pop(inbound.Callsign)
  78. self.insertInWindow(inbound, True)
  79. else:
  80. inbound.FixedSequence = index < self.FreezedIndex
  81. self.Windows[index].Inbounds.sort(key = lambda x: x.PlannedArrivalTime if None != x.PlannedArrivalTime else x.InitialArrivalTime)
  82. def lastFixedInboundOnRunway(self, runway : str):
  83. # no inbounds available
  84. if 0 == len(self.Windows):
  85. return None
  86. # search from the back to the front to find the last inbound
  87. for i in range(min(self.FreezedIndex, len(self.Windows)), -1, -1):
  88. for inbound in self.Windows[i].Inbounds:
  89. if runway == inbound.PlannedRunway.Name:
  90. return inbound
  91. # no inbound found
  92. return None
  93. def optimizationRelevantInbounds(self):
  94. # no new inbounds
  95. if len(self.Windows) <= self.FreezedIndex:
  96. return None, None
  97. inbounds = []
  98. earliestArrivalTime = None
  99. # check the overlapping windows
  100. for i in range(0, len(self.Windows)):
  101. #for i in range(self.FreezedIndex + 1, min(len(self.Windows), self.FreezedIndex + 1 + self.Configuration.WindowOverlap)):
  102. if None == earliestArrivalTime:
  103. earliestArrivalTime = self.Windows[i].StartTime
  104. for inbound in self.Windows[i].Inbounds:
  105. inbounds.append(inbound)
  106. # check if we found relevant inbounds
  107. if 0 != len(inbounds):
  108. inbounds.sort(key = lambda x: x.InitialArrivalTime)
  109. return inbounds, earliestArrivalTime
  110. else:
  111. return None, None
  112. def sequence(self):
  113. inbounds = []
  114. for i in range(0, len(self.Windows)):
  115. for inbound in self.Windows[i].Inbounds:
  116. inbounds.append(inbound)
  117. return inbounds
  118. def cleanupWindows(self):
  119. currentUtc = dt.utcfromtimestamp(int(time.time())).replace(tzinfo = pytz.UTC)
  120. offsetCorrection = 0
  121. # delete the non-required windows
  122. while 0 != len(self.Windows) and currentUtc > self.Windows[0].EndTime:
  123. # cleanup the association table
  124. for inbound in self.Windows[0].Inbounds:
  125. self.AssignedWindow.pop(inbound.Callsign)
  126. offsetCorrection += 1
  127. self.Windows.pop(0)
  128. # correct the association table
  129. if 0 != offsetCorrection:
  130. for callsign in self.AssignedWindow:
  131. self.AssignedWindow[callsign][0] -= offsetCorrection
  132. if self.AssignedWindow[callsign][0] < self.FreezedIndex:
  133. self.Windows[self.AssignedWindow[callsign][0]].inbound(callsign).FixedSequence = True
  134. # delete the non-updated aircrafts and increase the missed-counter for later runs
  135. callsigns = []
  136. for callsign in self.AssignedWindow:
  137. if 2 < self.AssignedWindow[callsign][1]:
  138. self.Windows[self.AssignedWindow[callsign][0]].remove(callsign)
  139. callsigns.append(callsign)
  140. self.AssignedWindow[callsign][1] += 1
  141. for callsign in callsigns:
  142. self.AssignedWindow.pop(callsign)