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	Add area data model
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		@@ -1,17 +0,0 @@
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'''
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Created on 6 nov. 2018
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@author: Admin
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'''
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class Area:
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    locked = False 
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    def __init__(self, coords):
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        self.coords = coords
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    def getCoords(self):
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        return self.coords
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@@ -1,96 +0,0 @@
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import os, sys
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from sumo_project.SUMOFactory import SUMOFactory
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# Traci launch
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if 'SUMO_HOME' in os.environ:
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    tools = os.path.join(os.environ['SUMO_HOME'], 'tools')
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    sys.path.append(os.path.join(os.environ['SUMO_HOME'], tools))
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    sumoBinary = os.path.join(os.environ['SUMO_HOME'], 'bin', 'sumo-gui')
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    sumoCmd = [sumoBinary, "-c", "mulhouse_simulation/osm.sumocfg"]
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else:
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    sys.exit("please declare environment variable 'SUMO_HOME'")
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import traci
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from traci import polygon
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# creating multiple zones of equal sizes
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def init_grid():
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    default_color = (0, 255, 0)
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    for i in range(cells_step):
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        for j in range(cells_step):
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            area = ((i * width, j * height), (i * width, (j + 1) * height),
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                      ((i + 1) * width, (j + 1) * height), ((i + 1) * width, j * height))
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            areas[i][j] = area
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            polygon.add("area " + str(i) + "," + str(j), area, default_color, False, "rectangle")
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# Emissions recovery by area
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def getEmissionsByArea(i, j):
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    vehicles = []
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    # Vehicle IDs retrieving into this area
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    for veh_id in traci.vehicle.getIDList():
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        pos = traci.vehicle.getPosition(veh_id)
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        if((i * width < pos[0] and (i + 1) * width > pos[0])
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            and (j * height < pos[1] and (j + 1) * height > pos[1])):
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            vehicles.append(veh_id)
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    # Sum all emissions
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    emissions = 0.0
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    for veh_id in vehicles:
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        emission = traci.vehicle.getCO2Emission(veh_id)
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        emissions += emission
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    # Change area color if emisssions exceeds the threshold
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    emissionsArea[i][j] += emissions
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    if(emissionsArea[i][j] >= CO2_threshold):
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        red = (255, 0, 0)
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        factory.lock_area(areas[i][j])
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        polygon.setColor("area " + str(i) + "," + str(j), red)
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        polygon.setFilled("area " + str(i) + "," + str(j), True)
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# Recover emissions from all areas
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def getAllEmissions():
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    for i in range(cells_step):
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        for j in range(cells_step):
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            getEmissionsByArea(i, j)
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# Display emissions information
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def showEmissions():
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    for i in range(cells_step):
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        for j in range(cells_step):
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            print("Total CO2 emissions into Area " + str(i) + "," + str(j) 
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                  +" = " , str(emissionsArea[i][j]) + " mg")
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if __name__ == "__main__":
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    # Simulation launch
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    traci.start(sumoCmd)
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    # Variables and constants declaration
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    cells_step = 10
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    boundary = traci.simulation.getNetBoundary()
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    areas = [[0] * cells_step for _ in range(cells_step)]
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    emissionsArea = [[0] * cells_step for _ in range(cells_step)]
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    width = boundary[1][0] / cells_step  # width/step
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    height = boundary[1][1] / cells_step  # height/step 
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    CO2_threshold = 500000
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    step = 0
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    init_grid()
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    factory = SUMOFactory() 
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    #factory.lock_area(areas[5][5])
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    while traci.simulation.getMinExpectedNumber() > 0:
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        traci.simulationStep()
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        getAllEmissions()
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        step += 1
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    # Display emissions information and close simulation
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    showEmissions()
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    traci.close()
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sys.stdout.flush()
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										28
									
								
								sumo_project/area.py
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										28
									
								
								sumo_project/area.py
									
									
									
									
									
										Normal file
									
								
							@@ -0,0 +1,28 @@
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from shapely.geometry import Polygon
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from shapely.geometry import Point
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class Area:
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    def __init__(self, coords, name=''):
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        self.rectangle = Polygon(coords)
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        self.name = name
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        self.emissions = 0.0
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    def __eq__(self, other):
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        return self.rectangle.__eq__(other)
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    @property
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    def bounds(self):
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        return self.rectangle.bounds
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    def contains(self, other):
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        return self.rectangle.contains(Point(other))
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    @classmethod
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    def from_bounds(cls, xmin, ymin, xmax, ymax):
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        return cls((
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            (xmin, ymin),
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            (xmin, ymax),
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            (xmax, ymax),
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            (xmax, ymin)))
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