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Experiments simulation and design to set traffic lights' operation rules

机译:实验仿真和设计以设置交通信号灯的操作规则

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摘要

This empirical study aims to minimize the travel time of motor vehicles on one of the most important avenues in Celaya City, Guanajuato, Mexico, by means of the optimal synchronization of existing traffic lights. In the optimization process, the following three factors are considered with 3 evaluation levels each: traffic light cycle times; the synchrony defined as staggered, parallel and actual; and the speed limit. The response variables to consider were the average time in the system, the fuel consumption and the greenhouse effect gas (CO2) emissions. Different experiments were performed using the simulation model developed in the PTV-VISSIM software, which represents the vehicle traffic system. The obtained results for the different proposed scenarios allow proper levels to be determined for vehicle traffic system operation to improve mobility, reduce contamination rates and decrease fuel consumption for different motor vehicles using the avenue. As a result, it was possible to establish a methodology that combines microsimulation and design of experiments to program traffic lights and define the operating conditions of a complex vehicular flow system.
机译:这项实证研究旨在通过对现有交通信号灯的最佳同步,最大限度地减少在墨西哥瓜纳华托州塞拉亚市最重要的大街之一上的机动车行驶时间。在优化过程中,考虑以下三个因素,每个因素具有3个评估级别:交通灯周期时间;同步定义为交错,并行和实际;和速度限制。要考虑的响应变量是系统中的平均时间,燃料消耗和温室效应气体(CO2)排放。使用代表车辆交通系统的PTV-VISSIM软件中开发的仿真模型进行了不同的实验。对于不同的拟议方案,所获得的结果允许为车辆交通系统的运行确定适当的水平,以提高机动性,降低污染率并减少使用该道路的不同机动车辆的燃料消耗。结果,有可能建立一种将微观模拟与实验设计相结合以对交通信号灯进行编程并定义复杂的车辆流量系统的运行条件的方法。

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