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main.py
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98
main.py
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import csv
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import math
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import random
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import matplotlib.pyplot as plt
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class Mensch(object):
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def __init__(self):
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#toImplement
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def getCoordinates(self, bdl):
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bdlDict = {'Vorarlberg': [0, 0], 'Tirol': [1, 0], 'Kärnten': [2, 0], 'Salzburg': [0, 1],
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'Steiermark': [1, 1], 'Burgenland': [2, 1], 'Oberösterreich': [0, 2],
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'Niederösterreich': [1, 2], 'Wien': [2, 2]}
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return [int(bdlDict[bdl][0]) + random.random(), int(bdlDict[bdl][1]) + random.random()]
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def die(self):
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#toImplement
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def infect(self, day):
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#toImplement
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#Distanz = math.sqrt((self.Koordinaten[0] - Population[randIndex].Koordinaten[0]) * (self.Koordinaten[0] - Population[randIndex].Koordinaten[0]) + (self.Koordinaten[1] - Population[randIndex].Koordinaten[1]) * (self.Koordinaten[1] - Population[randIndex].Koordinaten[1]))
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class Simulation(object):
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def __init__(self, population):
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self.Population = population
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def simulate(self):
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#toImplement
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# Visualisierung
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# Scatter Plot
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x_inf = []
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y_inf = []
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x_fit = []
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y_fit = []
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for human in Population:
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if (human.Infiziert):
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x_inf.append(human.Koordinaten[0])
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y_inf.append(human.Koordinaten[1])
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else:
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x_fit.append(human.Koordinaten[0])
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y_fit.append(human.Koordinaten[1])
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plt.title("Population")
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plt.scatter(x_inf, y_inf, c="red", s=5)
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plt.scatter(x_fit, y_fit, c="blue", s=2)
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plt.draw()
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if (i % 5 == 0):
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plt.savefig('result/populationOnDay' + str(i) + '.png')
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plt.pause(0.0001)
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plt.clf()
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if __name__ == '__main__':
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print("Generate Population:")
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Populationsfaktor = 0.01
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AnteilFrauen = 0.507
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Population = []
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bevAnzahl = 0
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bevDict = {}
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gebDict = {}
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gestDict = {}
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#read data from Statistik Austria
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with open('./data/Bevölkerung.csv') as bevoelkerung:
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csv_reader = csv.reader(bevoelkerung, delimiter = ';')
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rowcnt = 0
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for row in csv_reader:
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rowcnt = rowcnt + 1
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if rowcnt == 2:
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bevAnzahl = int(int(row[-1])*Populationsfaktor)
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if rowcnt > 2:
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bevDict[row[0]] = row[-1]
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with open('./data/Geburten2021.csv') as geburten:
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csv_reader = csv.reader(geburten, delimiter=';')
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rowcnt = 0
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for row in csv_reader:
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rowcnt = rowcnt + 1
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if rowcnt > 2:
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gebDict[row[0]] = [row[-2], row[-1]]
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with open('./data/Gestorbene2021.csv') as gestorbene:
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csv_reader = csv.reader(gestorbene, delimiter=';')
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rowcnt = 0
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for row in csv_reader:
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rowcnt = rowcnt + 1
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if rowcnt > 2:
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gestDict[row[0]] = [row[-2], row[-1]]
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print(bevDict)
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print(gebDict)
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print(gestDict)
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print(bevAnzahl)
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print(random.random())
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for i in range(int(bevAnzahl)):
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gender = 1
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if(random.random()>0.507):
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gender = 0
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age = random.randint(0, 101)
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bdl = ""
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randBdl = random.random()
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BdlCount = 0
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for key in bevDict.keys():
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BdlCount += int(bevDict[key])
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checkWlsk = (BdlCount*Populationsfaktor)/int(bevAnzahl)
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if(randBdl < checkWlsk):
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bdl = str(key)
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break
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Population.append(Mensch(age, gender, bdl))
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Simulation = Simulation(Population)
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Simulation.simulate()
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