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Calculation of vehicle delay at signal-controlled intersections with adaptive traffic control algorithm

机译:自适应交通控制算法计算信号控制交叉口车辆延误

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By widely introducing information technology tools in the field of traffic control, it is possible to increase the capacity of hubs and reduce vehicle delays. Adaptive traffic light control is one of such tools. Its effectiveness can be assessed through traffic flow simulation. The aim of this study is to create a simulation model of a signal-controlled intersection that can be used to assess the effectiveness of adaptive control in various traffic situations, including the presence or absence of pedestrian traffic through an intersection. The model is based on a numerical experiment conducted using the Monte Carlo method. As a result of the study, vehicle delays, queue length and duration of traffic light cycles are calculated subject to different intensities of incoming traffic flows, and the presence or absence of pedestrian traffic.
机译:通过在交通控制领域广泛引入信息技术工具,可以增加集线器的容量并减少车辆延误。自适应交通信号灯控制就是这样的工具之一。可以通过交通流仿真评估其有效性。这项研究的目的是创建一个信号控制交叉路口的仿真模型,该模型可用于评估各种交通状况(包括是否存在通过交叉路口的行人交通)的自适应控制的有效性。该模型基于使用蒙特卡洛方法进行的数值实验。研究的结果是,根据传入交通流量的不同强度以及是否存在行人交通,计算车辆的延误,队列长度和交通信号灯周期的持续时间。

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