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Cascading Failures in Weighted Complex Networks of Transit Systems Based on Coupled Map Lattices

机译:基于耦合地图格子的传输系统加权复杂网络级联失败

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摘要

Study on the vulnerability and robustness of urban public transit networks (PTNs) has great implications for PTNs planning and emergency management, particularly considering passengers’ dynamic behaviors. We made a complex weighted network analysis based on passenger flow for Beijing’s bus stop network and multimodal transit network coupled with bus and urban rail systems. The analysis shows that there are small-world or scale-free properties in these two networks, which make them display different robustness under link or node failures. With consideration of the dynamic flow redistribution, we propose a model based on coupled map lattices to analyze the cascading failures of these two weighted networks. We find that the dynamic flow redistribution can significantly improve the tolerance of small-world or scale-free PTN against random faults. Because of the coupling of bus and rail systems, the multimodal network with scale-free topology and flow distribution structures displays an increasing tolerance even against intentional attack; however, its cascade is also much more intense once the failure is triggered. We find some thresholds of topological and flow coupling strength in the spreading process, which can be exploited to develop strategies to control cascade failures.
机译:对城市公共交通网络(PTNS)的脆弱性和稳健性研究对PTNS计划和应急管理有很大的影响,特别是考虑乘客的动态行为。我们基于北京公交车站网络和与公共汽车和城市轨道系统耦合的多式联运网络进行了复杂的加权网络分析。分析表明,这两个网络中存在小世界或无垢的属性,使它们在链路或节点故障下显示不同的鲁棒性。考虑到动态流量再分配,我们提出了一种基于耦合的地图格的模型来分析这两个加权网络的级联故障。我们发现动态流量再分配可以显着提高小世界或无垢PTN对随机故障的容忍度。由于总线和轨道系统的耦合,具有无垢拓扑和流量分配结构的多模态网络即使对故意攻击也会显示出增加的耐受性;然而,一旦触发失败,它的级联也更加强烈。我们在扩散过程中找到了一些拓扑和流动耦合强度的阈值,可以利用来开发控制级联故障的策略。

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