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Dynamic Evolution Analysis of Metro Network Connectivity and Bottleneck Identification: From the Perspective of Individual Cognition

机译:地铁网络连通性和瓶颈识别的动态演化分析:基于个人认知的视角

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Metro network connectivity is crucial for ensuring reliable operation of metro systems. Despite the rich literature on the connectivity analysis of transportation network, very little attention has been paid to passengers' heterogeneous cognition toward congestion and connectivity incorporating subjective judgment. In this paper, we develop a data-driven framework to analyze metro network connectivity evolution involving individual cognition by characterizing it as a transit percolation process. The concept of individual tolerance index of congestion and a measure named network friendliness are proposed. By comparing individual tolerance index and friendliness of metro network, metro network connectivity with regard to different passengers can be depicted quantitatively. The evolution of network connectivity can be monitored both as individual tolerance changes and as time goes on. We also demonstrate how global transit breaks down when the identified bottlenecks are congested from the perspective of the passengers' cognition. The proposed method is validated using a real-world case of the Shenzhen Metro in China. Results show that the proposed method is effective in capturing the dynamic evolution of the Shenzhen metro network connectivity and enable effective identification of transit bottlenecks. The network connectivity and friendliness are found to be significantly increased through a small improvement of the bottlenecks pinpointed.
机译:城域网连接对于确保城域系统的可靠运行至关重要。尽管有关交通网络连通性分析的文献很多,但很少有人关注乘客对主观判断的拥挤和连通性的异质认知。在本文中,我们开发了一个数据驱动的框架,通过将其识别为过境渗流过程来分析涉及个人认知的地铁网络连接性演变。提出了个人拥塞容忍指数的概念以及一种称为网络友好度的措施。通过比较个人容忍度指数和地铁网络的友好程度,可以定量地描述针对不同乘客的地铁网络连通性。网络连接的发展可以随着个人容忍度的变化和时间的流逝而受到监控。我们还演示了从乘客的认知角度来看,当识别出的瓶颈拥塞时,全球交通如何崩溃。该方法已在中国深圳地铁的实际案例中得到了验证。结果表明,该方法能够有效地捕获深圳地铁网络连通性的动态变化,并能有效识别公交瓶颈。发现网络连接和友好性可以通过略微改善指出的瓶颈来显着提高。

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