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Contraflow Transportation Network Reconfiguration for Evacuation Route Planning

机译:疏散交通网络重构,用于疏散路线规划

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Given a transportation network having source nodes with evacuees and destination nodes, we want to find a contraflow network configuration, i.e., ideal direction for each edge, to minimize evacuation time. Contraflow is considered a potential remedy to reduce congestion during evacuations in the context of homeland security and natural disasters (e.g., hurricanes). This problem is computationally challenging because of the very large search space and the expensive calculation of evacuation time on a given network. To our knowledge, this paper presents the first macroscopic approaches for the solution of contraflow network reconfiguration incorporating road capacity constraints, multiple sources, congestion factor, and scalability. We formally define the contraflow problem based on graph theory and provide a framework of computational workload to classify our approaches. A Greedy heuristic is designed to produce high quality solutions with significant performance. A Bottleneck Relief heuristic is developed to deal with large numbers of evacuees. We evaluate the proposed approaches both analytically and experimentally using real world datasets. Experimental results show that our contraflow approaches can reduce evacuation time by 40% or more.
机译:给定一个具有源节点和疏散源节点以及目标节点的运输网络,我们希望找到一个逆流网络配置,即每个边缘的理想方向,以最大程度地减少疏散时间。在国土安全和自然灾害(例如飓风)的背景下,逆流被认为是减少疏散过程中交通拥堵的潜在补救措施。由于非常大的搜索空间和给定网络上撤离时间的昂贵计算,因此该问题在计算上具有挑战性。据我们所知,本文提出了第一种宏观方法,用于解决逆流网络重新配置的问题,该方法结合了道路通行能力约束,多种来源,拥塞因子和可伸缩性。我们基于图论正式定义了逆流问题,并提供了计算工作量的框架来对我们的方法进行分类。贪婪启发式设计旨在产生具有显着性能的高质量解决方案。开发了瓶颈缓解启发式方法来处理大量撤离人员。我们使用现实世界的数据集在分析和实验上评估提出的方法。实验结果表明,我们的逆流方法可以将疏散时间减少40%或更多。

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