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Weak Nodes Detection in Urban Transport Systems: Planning for Resilience in Singapore

机译:城市运输系统中的弱节点检测:计划在新加坡的恢复力

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The availability of massive data-sets describing human mobility offers the possibility to design simulation tools to monitor and improve the resilience of transport systems in response to traumatic events such as natural and man-made disasters (e.g., floods, terrorist attacks, etc. . . ). In this perspective, we propose ACHILLES, an application to models people's movements in a given transport mode through a multiplex network representation based on mobility data. ACHILLES is a web-based application which provides an easy-to-use interface to explore the mobility fluxes and the connectivity of every urban zone in a city, as well as to visualize changes in the transport system resulting from the addition or removal of transport modes, urban zones, and single stops. Notably, our application allows the user to assess the overall resilience of the transport network by identifying its weakest node, i.e. Urban Achilles Heel, with reference to the ancient Greek mythology. To demonstrate the impact of ACHILLES for humanitarian aid we consider its application to a real-world scenario by exploring human mobility in Singapore in response to flood prevention.
机译:描述人类移动性的大规模数据集的可用性提供了设计模拟工具来监控和改善运输系统的弹性,以应对自然和人为灾害(例如,洪水,恐怖袭击等。 。)。在这种观点中,我们提出了基于移动性数据的多路复用网络表示在给定的传输模式中模拟人们在给定传送模式中的应用程序的应用程序。 Achilles是一种基于Web的应用程序,提供易于使用的界面,以探索城市中每个城市区域的移动通量和连接性,以及可视化交通工具的运输系统的变化模式,城市区和单站。值得注意的是,我们的申请允许用户通过识别其最弱的节点,即城市Achilles脚跟,参考古希腊神话来评估传输网络的整体恢复力。为了展示阿基里斯对人道主义援助的影响,我们将其在新加坡探索人类流动时考虑其对现实世界的情景,以应对防洪。

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