99 lines
		
	
	
		
			4.4 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
			
		
		
	
	
			99 lines
		
	
	
		
			4.4 KiB
		
	
	
	
		
			Python
		
	
	
	
	
	
| #!/usr/bin/env python
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| 
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| from datetime import datetime, timedelta
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| 
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| from aman.sys.aco.Configuration import Configuration
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| from aman.sys.aco.Constraints import SpacingConstraints
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| from aman.types.Inbound import Inbound
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| 
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| class RunwayManager:
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|     def __init__(self, configuration : Configuration):
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|         self.Spacings = SpacingConstraints()
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|         self.Configuration = configuration
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| 
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|         # initialize the tracker which inbound arrives at which runway
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|         self.RunwayInbounds = {}
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|         if None != configuration.PreceedingInbounds:
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|             for runway in configuration.PreceedingInbounds:
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|                 self.RunwayInbounds[runway] = configuration.PreceedingInbounds[runway]
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|         for runway in configuration.RunwayConstraints.ActiveArrivalRunways:
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|             if not runway.Runway.Name in self.RunwayInbounds:
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|                 self.RunwayInbounds[runway.Runway.Name] = None
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| 
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|     def validateWtc(inbound : Inbound):
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|         wtc = inbound.Report.aircraft.wtc.upper()
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|         if 'L' == wtc or 'M' == wtc or 'H' == wtc or 'J' == wtc:
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|             return wtc
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|         else:
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|             return None
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| 
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|     def calculateEarliestArrivalTime(self, runway : str, inbound : Inbound, useITA : bool, earliestArrivalTime : datetime):
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|         earliestArrivalTimes = []
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| 
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|         if None != self.RunwayInbounds[runway]:
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|             # get the WTC based ETA
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|             wtcPre = RunwayManager.validateWtc(self.RunwayInbounds[runway])
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|             wtcThis = RunwayManager.validateWtc(inbound)
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|             if None == wtcPre or None == wtcThis:
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|                 spacing = 3
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|             else:
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|                 spacing = self.Spacings[wtcPre][wtcThis]
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|             delay = timedelta(minutes = spacing / (inbound.PerformanceData.SpeedApproach / 60))
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|             earliestArrivalTimes.append(self.RunwayInbounds[runway].PlannedArrivalTime + delay)
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| 
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|             # get the runway time spacing
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|             spacing = self.Configuration.RunwayConstraints.findRunway(runway).Spacing
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|             delay = timedelta(minutes = spacing / (inbound.PerformanceData.SpeedApproach / 60))
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|             earliestArrivalTimes.append(self.RunwayInbounds[runway].PlannedArrivalTime + delay)
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| 
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|         # calculate the arrival times for the dependent inbounds
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|         for dependentRunway in self.Configuration.RunwayConstraints.findDependentRunways(runway):
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|             if None != self.RunwayInbounds[dependentRunway.Runway.Name]:
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|                 delay = timedelta(minutes = 3 / (inbound.PerformanceData.SpeedApproach / 60))
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|                 earliestArrivalTimes.append(self.RunwayInbounds[dependentRunway.Runway.Name].PlannedArrivalTime + delay)
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| 
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|         # get the arrival time on the runway of the inbound
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|         if True == useITA:
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|             arrivalTime = inbound.ArrivalCandidates[runway].EarliestArrivalTime
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|         else:
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|             arrivalTime = inbound.ArrivalCandidates[runway].InitialArrivalTime
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| 
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|         if 0 == len(earliestArrivalTimes):
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|             return arrivalTime, timedelta(seconds = 0)
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|         else:
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|             eta = max(earliestArrivalTimes)
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|             if eta < arrivalTime:
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|                 return arrivalTime, arrivalTime - eta
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|             else:
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|                 return eta, timedelta(seconds = 0)
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| 
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|     def selectArrivalRunway(self, inbound : Inbound, useITA : bool, earliestArrivalTime : datetime):
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|         availableRunways = []
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|         for runway in self.Configuration.RunwayConstraints.ActiveArrivalRunways:
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|             availableRunways.append(runway)
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| 
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|         #if 1 < len(availableRunways):
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|             # TODO filter based on type
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|             # TODO filter based on airline
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|             # ensure that at least one runway is available
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| 
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|         # fallback to check if we have available runways
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|         if 0 == len(availableRunways):
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|             runway = self.Configuration.RunwayConstraints.ActiveArrivalRunways[0]
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|             return runway, self.calculateEarliestArrivalTime(runway.Runway.Name, inbound, useITA, earliestArrivalTime)
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| 
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|         # start with the beginning
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|         selectedRunway = None
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|         lostTime = None
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|         eta = None
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| 
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|         # get the runway with the earliest ETA
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|         for runway in availableRunways:
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|             candidate, delta = self.calculateEarliestArrivalTime(runway.Runway.Name, inbound, useITA, earliestArrivalTime)
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|             if None == eta or eta > candidate:
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|                 selectedRunway = runway.Runway
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|                 lostTime = delta
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|                 eta = candidate
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| 
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|         return selectedRunway, eta, lostTime
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