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Simulation analysis for evacuation under congested traffic scenarios: a case study

机译:交通拥挤情况下疏散的仿真分析:一个案例研究

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In this paper a new simulation modeling approach to support evacuation traffic management is introduced and a case study is presented. Traditional traffic simulation models neglect some real-life factors that need to be considered in an evacuation, such as the effect of road information and active control measures to manage traffic flow while vehicles are competing to find the best or preferred route. A passive equilibrium-seeking modeling approach may not be suitable for evacuation trip analysis due to limited route capacity and likely severe congestion during an evacuation. This paper introduces a new updated cell transmission model using discrete-event simulation, which can review and analyze the preferred path of evacuation traffic from multiple starting locations (or originations) to multiple destinations. Using this approach, case studies are conducted based on the user equilibrium principle, since it represents a natural behavior in an evacuation process. This research also demonstrates that, with the help of the cell transmission simulation model, an active traffic control mechanism can be evaluated. This study found that active traffic control measures are capable of decreasing total travel time during an evacuation by thousands of vehicle hours. Incorporating behavior consideration into the evacuation planning can help form a more accurate and realistic analysis of an evacuation plan.
机译:本文介绍了一种新的支持疏散交通管理的仿真建模方法,并进行了案例研究。传统的交通模拟模型忽略了疏散过程中需要考虑的一些现实因素,例如道路信息的影响以及主动控制措施以管理车辆在寻找最佳或首选路线时的交通流量。被动平衡寻求建模方法可能不适合用于疏散行程分析,原因是路线容量有限且疏散期间可能出现严重拥堵。本文介绍了一种使用离散事件模拟的新更新的小区传输模型,该模型可以查看和分析从多个起始位置(或始发地)到多个目的地的疏散交通的首选路径。使用这种方法,基于用户平衡原理进行案例研究,因为它代表了疏散过程中的自然行为。这项研究还表明,借助小区传输仿真模型,可以评估主动交通控制机制。这项研究发现,主动交通控制措施能够减少疏散过程中的总行驶时间数千小时。将行为考虑因素纳入疏散计划可以帮助形成对疏散计划的更准确和现实的分析。

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