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首页> 外文期刊>Procedia - Social and Behavioral Sciences >Variable Speed Limit Design to Relieve Traffic Congestion based on Cooperative Vehicle Infrastructure System
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Variable Speed Limit Design to Relieve Traffic Congestion based on Cooperative Vehicle Infrastructure System

机译:基于协同车辆基础设施系统的限速设计缓解交通拥堵

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摘要

To uniform traffic flow, and to improve traffic mobility and safety, variable speed limit (VSL) is usually implemented on freeways. With predictive models, traffic states evolutions can be predicted, so VSL values can be optimized within model predictive control (MPC) frameworks to keep traffic flow at a high efficiency and suppress propagation of shockwaves, especially during congestion periods. METANET model is a widely used predictive tool, as well as its many extensions. In this paper, a new extension of METANET is proposed based on cooperative vehicle infrastructure system (CVIS), also known as vehicle-infrastructure integration (VII) system. By introducing vehicle models, vehicles’ speed and position on each link are recorded, and prediction is changed to a mesoscopic scale, which describes the traffic entities at a high level of detail, but describes their behaviour and interactions at a lower level of detail (Van Woensel et al., 2007). Compared with previous studies that use macroscopic variables for prediction, the new model suits the situations in CVIS, where communication between vehicles and infrastructures will be adopted to replace variable message signs (VMS). Simulation results have shown the capacity of the proposed model in predicting state evolutions. Additionally, VSL's ability to improve traffic efficiency and prevent congestion propagation is proved.
机译:为了统一交通流量,并提高交通流动性和安全性,通常在高速公路上实施变速限制(VSL)。利用预测模型,可以预测交通状态的演变,因此可以在模型预测控制(MPC)框架内优化VSL值,以保持交通流量的高效率并抑制冲击波的传播,尤其是在拥堵期间。 METANET模型及其广泛的扩展是一种广泛使用的预测工具。本文提出了一种基于协作车辆基础设施系统(CVIS)的METANET的新扩展,该系统也称为车辆基础设施集成(VII)系统。通过引入车辆模型,可以记录车辆在每个链接上的速度和位置,并将预测更改为介观尺度,从而以较高的详细程度描述交通实体,但以较低的详细程度描述其行为和相互作用( Van Woensel等,2007)。与以前使用宏观变量进行预测的研究相比,新模型适合CVIS中的情况,在这种情况下,将采用车辆和基础设施之间的通信来替代可变消息标志(VMS)。仿真结果表明,该模型具有预测状态演化的能力。此外,还证明了VSL具有提高流量效率和防止拥塞传播的能力。

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