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Transportation functionality vulnerability of urban rail transit networks based on movingblock: The case of Nanjing metro

机译:基于MOVELLOCK的城市轨道交通网络运输功能脆弱性:南京地铁的情况

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摘要

This paper employs system science and complex network theory to abstract the topological structure and to analyze the connectivity of urban rail transit networks. Meanwhile, movingblock technology is applied to calculate the transportation functionality and to investigate the static and dynamic vulnerability based on transportation functionality of urban rail transit networks. Considering Nanjing metro network as example, the results show that the connectivity of Nanjing metro network is very poor. For static failures, Nanjing metro network is very vulnerable when suffering malicious attacks, and the highest load node-based attacks can result in more damages than the largest degree node-based attacks. For dynamic failures, the results show that the transportation functionality becomes larger and larger with the increase of the control parameter of load capacity, which illustrates that the reliability becomes higher and higher with the increase of the construction cost. Therefore, we can declare that there exists a tradeoff between the reliability and construction cost of urban rail transit networks. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文采用系统科学和复杂的网络理论来摘要拓扑结构,分析城市轨道交通网络的连通性。同时,迁移博技术适用于计算运输功能,并研究基于城市轨道交通网络运输功能的静态和动态脆弱性。考虑到南京地铁网络为例,结果表明,南京地铁网络的连接非常差。对于静态故障,南京地铁网络在遭受恶意攻击时非常脆弱,并且最高负载节点的攻击可能会导致比基于节点的最大节点的攻击更多的损坏。对于动态故障,结果表明,随着负载能力控制参数的增加,运输功能变大,较大,这表明该可靠性随着构造成本的增加而变高而更高。因此,我们可以声明城市铁路运输网络的可靠性和施工成本之间存在权衡。 (c)2019 Elsevier B.v.保留所有权利。

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