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首页> 外文期刊>Quality Control, Transactions >Coordinated Intersection Signal Design for Mixed Traffic Flow of Human-Driven and Connected and Autonomous Vehicles
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Coordinated Intersection Signal Design for Mixed Traffic Flow of Human-Driven and Connected and Autonomous Vehicles

机译:用于人机和互联和自主车辆混合交通流量的协调交叉信号设计

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摘要

This manuscript investigated coordinated intersection signal design problem for mixed traffic flow of Human-Driven Vehicles (HDVs) and Connected and Autonomous Vehicles (CAVs). Two main macroscopic impact of the mixed fiow on signal setting are considered: saturation fiow rate and the platoon dispersion. In order to capture the traffic fiow operational characteristics on coordinated intersections, three locations, namely entrance location where the loop detector was located at, and upstream intersection and downstream intersection were defined. Two types of vehicle cumulative curves, namely cumulative arrival profile and cumulative departure profile were constructed. The mixed-flow traffic dynamics were analyzed, and the arrival-departure curves relationship was derived using a combination of Newell car-following and Akcelik acceleration model. A mixed-flow platoon dispersion model was proposed to describe the vehicle's progression between two locations. Due to the nonlinear nature of the problem, a particle swarm optimization (PSO) method was employed to obtain the optimal signal parameters, including the cycle length, green duration, and optimal offset. The algorithm was implemented and validated in a case study involving two intersections, with the demand formulated and simulated by the Markov chain. The results showed that the proposed model could effectively decrease delays when compared with current signal control methods.
机译:该稿件调查了用于人机车辆(HDV)和连接和自主车辆(CAVE)的混合交通流量的协调交叉点信号设计问题。将混合电极的两个主要宏观撞击在信号设置上被认为是:饱和度率和排分散。为了在协调的交叉点上捕获交通管制特性,定义了三个位置,即循环检测器位于循环检测器的入口位置以及上游交叉点和下游交叉点。构建了两种类型的车辆累积曲线,即累积到达配置文件和累积偏离剖面。分析了混合流量交通动态,并使用Newell Car-inter和Akcelik加速模型的组合导出到达 - 离开曲线关系。提出了一种混合流排分散模型来描述车辆在两个位置之间的进展。由于问题的非线性性质,采用了粒子群优化(PSO)方法来获得最佳信号参数,包括循环长度,绿色持续时间和最佳偏移。在涉及两个交叉路口的案例研究中实施和验证了该算法,该需求由马尔可夫链配制和模拟。结果表明,与电流信号控制方法相比,所提出的模型可以有效地降低延迟。

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