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Route Redundancy-Based Network Topology Measure of Metro Networks

机译:基于冗余的网络拓扑衡量标准

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摘要

The metro system plays a very important role in the urban multimodal transportation system, yet it is susceptible to accidents. A well-designed metro system needs to provide alternative routes to travellers both in the disruptive events and the normal operating conditions for providing rerouting opportunities and balancing crowded lines. This paper provides a new dimension of assessing metro network performance-travellers' route redundancy (or route diversity), which is defined as the number of behaviourally effective routes between each origin-destination (O-D) pair in the network. The route redundancy of metro network is evaluated by statistical indicators of the distribution of the O-D-level number of effective routes. Compared with the existing connectivity and accessibility measures of topology network performance, route redundancy is also based on the topology network, but it takes the travellers' route choice into consideration. Specifically, the effective routes between each O-D pair would provide disaggregated information from the travellers' perspective. Case studies in four metropolises in the world, i.e., Shanghai, Beijing, London, and Tokyo, are conducted to examine the predisaster preparedness of the four metro networks explicitly from the perspective of route redundancy. The results indicate that the London metro network has the best route redundancy performance in terms of the statistical indicators of the distribution of the O-D level number of effective routes. Furthermore, the results of route redundancy are compared with typical measures of topology network performance in terms of measuring connectivity and accessibility of metro networks. Their differences are attributed to the fact that the route redundancy measure considers the travellers' O-D-level route choice beyond the pure network topology and the shortest path considerations of the existing measures. The route redundancy proposed in this paper could assist in evaluating the predisaster preparedness of current or planning metro networks from O-D level to network level.
机译:地铁系统在城市多式联运系统中起着非常重要的作用,但它易于发生意外。精心设计的地铁系统需要为旅行者提供替代航线,都是在破坏性事件和正常的操作条件下提供规模的机会和平衡拥挤的线路。本文提供了评估地铁网络性能旅行者的路线冗余(或路由分集)的新维度,该方法被定义为网络中每个原始目的地(O-D)对之间的行为有效路由的数量。地铁网络的路线冗余是通过统计指标进行统计指标,分布O-D级别的有效路线的分布。与现有的连接和可访问性措施相比,拓扑网络性能,路由冗余也基于拓扑网络,但它需要旅行者的路线选择考虑。具体地,每个O-D对之间的有效路由将提供来自旅行者的角度的分类信息。案例研究在世界上四个大都市,即,上海,北京,伦敦和东京,从路线冗余的角度来看,审查四个地铁网络的验证方案准备。结果表明,伦敦地铁网络具有最佳的冗余性能,就统计指标分布了O-D级别的有效路线的分配。此外,在测量地铁网络的连接和可访问性方面,将路线冗余的结果与拓扑网络性能的典型测量进行了比较。它们的差异归因于路线冗余度量认为超出纯网络拓扑的旅行者的O-D级路径选择以及现有措施的最短路径考虑。本文提出的路线冗余可以有助于评估从O-D级别到网络级别的当前或计划地铁网络的验证方案准备。

著录项

  • 来源
    《Journal of Advanced Transportation》 |2019年第4期|4576961.1-4576961.12|共12页
  • 作者单位

    Tongji Univ Minist Educ Key Lab Rd & Traff Engn Shanghai 201804 Peoples R China;

    Tongji Univ Minist Educ Key Lab Rd & Traff Engn Shanghai 201804 Peoples R China;

    Shanghai Shentong Metro Grp Shanghai 201103 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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