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Intelligent vehicle control at signal-free intersection under mixed connected environment

机译:混合连接环境下无信号交叉口的智能车辆控制

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摘要

Conflict vehicle movements at intersections are one bottleneck of traffic mobility on urban networks. Recently, with the development of connected vehicles, regulating conflict movements by controlling individual vehicles to improve intersection performance has attracted a lot of research efforts. This study aims at developing an advanced vehicle control system with connected vehicles to reduce vehicle delays at intersections without the help of signals. An intersection delay model is proposed to predict the total vehicle delay at one intersection and to search for the optimal speed control actions to manage traffic under mixed connected and non-connected vehicle environment. The simulation experiments illustrate that the control system is able to reduce average vehicle delay by up to 95%, and the sensitivity analysis of vehicle demand and market penetrate rates of connected vehicles is also conducted to understand the benefits of the system at different traffic and connected vehicle environments.
机译:交叉路口的冲突车辆移动是城市网络上交通移动性的瓶颈。近年来,随着联网车辆的发展,通过控制单个车辆来改善交叉路口性能来调节冲突运动吸引了许多研究工作。这项研究旨在开发一种先进的车辆控制系统,该系统具有连接的车辆,可在不借助信号的情况下减少交叉路口的车辆延迟。提出了一种交叉路口延误模型,以预测一个交叉路口的总车辆延误,并寻找最佳速度控制措施来管理混合连接和非连接车辆环境下的交通。仿真实验表明,该控制系统能够将平均车辆延迟降低多达95%,并且还进行了对车辆需求和联网车辆的市场渗透率的敏感性分析,以了解该系统在不同交通和联网情况下的优势车辆环境。

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