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首页> 外文期刊>Journal of Transportation Engineering >Optimization of Actuated Traffic Signal Plans Using a Mesoscopic Traffic Simulation
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Optimization of Actuated Traffic Signal Plans Using a Mesoscopic Traffic Simulation

机译:使用介观业务仿真优化致动交通信号计划

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Traffic signal plan designs become more complex with developments in the fields of sensing and communication and the introduction of features, such as transit priority or pedestrian actuation. Traffic signal optimization programs were developed mostly for the basic parameters of pretimed traffic signal plans using analytical or simple traffic models. Simulation-based optimization for other parameters related to actuated traffic signals has been very limited due to the high computational time associated with detailed traffic simulation models. This paper presents the overall structure and the various components of a simulation-based system to optimize the parameters of complex actuated traffic signal plans. The system framework incorporates a connection between a mesoscopic traffic simulation, MESCOP, traffic signal control, and a genetic algorithm as the optimization method. The integrated system is demonstrated with applications to a fully actuated signalized intersections with vehicle and pedestrian actuations and transit priority in Haifa, Israel.
机译:交通信号计划设计与传感和通信领域的发展变得更加复杂,以及引入特征,如过境优先或行人致动。使用分析或简单流量模型,主要开发了交通信号优化程序的基本参数,用于预测业务信号计划的基本参数。由于与详细的业务仿真模型相关的高计算时间,基于仿真的基于参数的优化已经非常有限。本文介绍了基于仿真的系统的整体结构和各种组成部分,以优化复杂致动交通信号计划的参数。系统框架包括介于介绍性流量仿真,MESCOP,交通信号控制和遗传算法之间的连接作为优化方法。通过应用于与以色列海法的车辆和行人致动和过境优先权进行全致动的信号交叉来证明集成系统。

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