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Disaster Management for Urban Commute in a Multimodal Transportation Context

机译:多式联运中城市通勤的灾害管理

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An interdependent multimodal transportation system, commonly used for commuting in urban areas, such as Baltimore City and Washington DC, may be comprised of various transportation modes with flexible transfer options, such as automobiles, buses, subways, and other types of rail transit. A sudden event, such as a disaster due to a terrorist attack, which may require evacuation of an isolated area within the highway network adds to the challenge of examining the efficiency and reliability of such an interdependent system. In disasters there are complexities associated with the dynamic nature of the commuting pattern, formation of choke points, and the ensuing chaos, that may affect people's route choice behavior in the face of urgent evacuation. For road traffic many transportation engineers utilize route guidance system as a tool for managing traffic away from the disaster area. With uncertainty in the commuting pattern during a disaster, system efficiency is crucial to minimizing evacuation time. Within a multimodal framework, this paper offers optimal shortest paths to improve pedestrian and transit modes of the transportation system efficiency in different disaster situations specific to urban commute.
机译:一种相互依赖的多式联运系统,通常用于城市通勤 巴尔的摩市和华盛顿特区等地区可能包括各种交通工具 具有灵活转换选项的模式,例如汽车,公共汽车,地铁和其他类型的铁路 过境。突发事件,例如由于恐怖袭击造成的灾难,可能需要撤离 高速公路网络中的隔离区域增加了检查效率的挑战 这种相互依赖的系统的可靠性。在灾难中存在复杂性 通勤模式的动态性质,节流点的形成以及随之而来的 混乱,可能会在紧急撤离时影响人们的选路行为。道路用 交通许多运输工程师利用路线引导系统作为交通管理工具 远离灾区。由于灾难期间通勤模式的不确定性,系统 效率对于最小化疏散时间至关重要。在多模式框架内,本文 提供最佳的最短路径,以改善行人和运输方式 特定于城市通勤的不同灾害情况下的系统效率。

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