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Estimating the Traffic Impacts of Green Light Optimal Speed Advisory Systems Using Microsimulation

机译:使用微观仿真估算绿灯最佳速度咨询系统的交通影响

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Even though signalised intersections are necessary for urban road traffic management, they can act as bottlenecks and disrupt traffic operations. Interrupted traffic flow causes congestion, delays, stop-and-go conditions (i.e. excessive acceleration/deceleration) and longer journey times. Vehicle and infrastructure connectivity offers the potential to provide improved new services with additional functions of assisting drivers. This paper focuses on one of the applications of vehicle-to-infrastructure communication namely Green Light Optimal Speed Advisory (GLOSA). To assess the effectiveness of GLOSA in the urban road network, an integrated microscopic traffic simulation framework is built into VISSIM software. Vehicle movements and vehicle-infrastructure communications are simulated through the interface of External Driver Model. A control algorithm is developed for recommending an optimal speed that is continuously updated in every time step for all vehicles approaching a signal-controlled point. This algorithm allows vehicles to pass a traffic signal without stopping or to minimise stopping times at a red phase. This study is performed with all connected vehicles at 100% penetration rate. Conventional vehicles are also simulated in the same network as a reference. A straight road segment composed of two opposite directions with two traffic lights per lane is studied. The simulation is implemented under 150 vehicles per hour and 200 per hour traffic volume conditions to identify how different traffic densities influence the benefits of GLOSA. The results indicate that traffic flow is improved by the application of GLOSA. According to this study, vehicles passed through the traffic lights more smoothly, and waiting times were reduced by up to 28 seconds. Average delays decreased for the entire network by 86.46% and 83.84% under traffic densities of 150 vehicles per hour per lane and 200 vehicles per hour per lane, respectively.
机译:尽管信号交叉口对于城市道路交通管理是必要的,但它们可能会成为瓶颈并破坏交通运营。交通流量中断会导致交通拥堵,延误,走走停停的情况(即过度加减速)和更长的行驶时间。车辆和基础设施的连通性具有提供辅助驾驶员附加功能的改进新服务的潜力。本文重点介绍了车辆到基础设施通信的一种应用,即绿灯最佳速度建议(GLOSA)。为了评估GLOSA在城市道路网中的有效性,VISSIM软件内置了一个集成的微观交通模拟框架。车辆运动和车辆基础设施通信通过外部驾驶员模型的接口进行仿真。已开发出一种控制算法,用于为所有接近信号控制点的车辆推荐最佳速度,该最佳速度在每个时间步长中不断更新。该算法允许车辆通过交通信号灯而不会停车,或将红色阶段的停车时间减至最少。这项研究是对所有联网车辆以100%的渗透率进行的。常规车辆也可以在与参考相同的网络中进行仿真。研究了由两个相反方向组成的直线路段,每个车道有两个交通信号灯。该模拟是在每小时150辆车和每小时200辆的交通量条件下实施的,以确定不同的交通密度如何影响GLOSA的收益。结果表明,通过应用GLOSA可以改善交通流量。根据这项研究,车辆通过交通信号灯更加顺畅,等待时间最多减少了28秒。在每车道每小时150辆车和每车道每小时200辆车的交通密度下,整个网络的平均延误分别减少了86.46%和83.84%。

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