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A composite traffic flow modeling approach for incident-responsive network traffic assignment

机译:用于事件响应网络流量分配的复合流量建模方法

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This paper presents a hybrid traffic simulation-based model to address the network traffic route choice issue under conditions of lane-blocking incidents on surface streets. The proposed approach includes four sequential mechanisms: (1) link flow loading, (2) link traffic moving, (3) link cost calculation, and (4) searching the shortest path. To deal with the traffic flows moving on lane-blocking links, specific incident-induced link traffic flow models, which are extended from the Lighthill-Whitham (L-W for short) model, are formulated. A simulation-based approach is then proposed to determine the instantaneous shortest path associated with each vehicle approaching to each given intersection on the network. In addition, numerical examples associated with diverse incident scenarios are investigated. The numerical results demonstrate the competitiveness of the proposed simulation-based method by reducing the network-wide path travel time by 11.4% and the incident impact on link traffic flows by 66.7% in comparison with the Paramics traffic simulator. It is expected that this study can provide linkage between the fields of incident management and dynamic traffic assignment that will allow the development of such related technologies as real-time incident-responsive route guidance and incident management systems. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于混合流量模拟的模型,以解决在平街发生车道阻塞事件的情况下网络交通路线选择的问题。所提出的方法包括四个顺序机制:(1)链路流量负载,(2)链路流量移动,(3)链路成本计算以及(4)搜索最短路径。为了处理在车道阻塞链路上移动的交通流,制定了从Lighthill-Whitham(简称L-W)模型扩展的特定事件引发的链路交通流模型。然后,提出了一种基于仿真的方法来确定与每个车辆接近的每个网络上给定交叉口的瞬时最短路径。此外,还研究了与各种事件场景相关的数值示例。数值结果通过与Paramics交通仿真器相比,将网络范围的路径旅行时间减少了11.4%,并将事件对链路交通流量的影响减少了66.7%,证明了该基于仿真方法的竞争力。期望这项研究能够在事件管理和动态交通分配领域之间建立联系,这将允许开发相关技术,例如实时事件响应路线引导和事件管理系统。 (c)2005 Elsevier B.V.保留所有权利。

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