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DelayFlow Centrality for Identifying Critical Nodes in Transportation Networks

机译:延迟流量识别运输网络中的关键节点

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In an urban city, its transportation network supports efficient flow of people between different parts of the city. Failures in the network can cause major disruptions to commuter and business activities which can result in both significant economic and time losses. In this paper, we investigate the use of centrality measures to determine critical nodes in a transportation network so as to improve the design of the network as well as to devise plans for coping with network failures. Most centrality measures in social network analysis research unfortunately consider only topological structure of the network and are oblivious of transportation factors. This paper proposes a new centrality measure called DelayFlow that incorporates travel time delay and commuter flow volume. We apply the proposed measures on the Singapore's subway network and its about 2 million commuter trips per day, and compare them with traditional topology based centrality measures.
机译:在城市城市,其运输网络支持在城市不同地区之间的高效流动。网络中的失败可能会对通勤和业务活动产生重大中断,这可能导致显着的经济和时间损失。在本文中,我们调查了中心度措施的使用来确定运输网络中的关键节点,以改善网络的设计,以及设计应对网络故障的计划。社会网络分析研究中的大多数中心措施都不遗憾地考虑网络的拓扑结构,并且是忘记运输因素。本文提出了一种称为LEADFLOW的新中心度量,该措施包括行程时间延迟和通勤流量。我们在新加坡地铁网络上申请拟议措施,每天约有200万通勤旅行,并与传统的基于拓扑的中心措施进行比较。

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