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首页> 外文期刊>Journal of Cleaner Production >Simulation-based vulnerability assessment in transit systems with cascade failures
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Simulation-based vulnerability assessment in transit systems with cascade failures

机译:基于级联系统的仿真漏洞评估

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摘要

The urban transit system is vulnerable to various types of hazards and failures, where the failure of a system component may lead to a redistribution of the pressure and result in cascade failures. It is of great significance to develop an efficient approach to model and assess the system vulnerability for achieving a sustainable transit system. This research develops a novel holistic approach to assess the vulnerability of the urban transit system toward sustainable development. The cascading failure mechanism is incorporated in the established complex network to simulate the process in a dependent system, where the failure of one or a few system components can trigger the failure of other components. Several attack strategies (i.e., static and dynamic intentional attack and random attack strategies) are used to test the system vulnerability, and the impacts of the tolerance parameter and passenger transfer rate on the loss of transport capacity are explored. A complex network consisting of 198 nodes and 415 edges is constructed to model the urban transit system with cascade failures. A realistic urban transit system in China is used as a case to testify the applicability and effectiveness of the developed approach. Results indicate that: (1) The interchange stations display high vulnerability in the network and Xianggang Rd station, Hongtu Boulevard station, Taipingyang station, and Zhongnan Rd are the most vulnerable stations, which should be paid more attention in the operation management; (2) The damage of the attacks in the intentional attack strategies are much more significant than that in the random attack, indicating that the proposed approach presents the ability to identify the important nodes; (3) The metric of node betweenness would be more efficient to identify the vulnerable nodes in the intentional attack; (4) The optimal value of the tolerance parameter is the range [0.8, 0.9], while keeping the passenger transfer rate in the range [0.3, 0.4] can effectively reduce the effect of cascade failures with minimum resources. The developed approach can be used as a decision tool to not only assess the vulnerability in the existing transit system but also optimize the planning of the new transit system.(c) 2021 Elsevier Ltd. All rights reserved.
机译:城市过境系统容易受到各种类型的危害和故障,系统组件的故障可能导致压力的重新分布并导致级联故障。开发一种有效的模型方法以及评估实现可持续交通系统的系统脆弱性具有重要意义。本研究开发了一种新颖的整体方法,可以评估城市过境系统对可持续发展的脆弱性。级联故障机制被包含在既定的复杂网络中,以模拟依赖系统中的过程,其中一个或多个系统组件的故障可以触发其他组件的故障。探讨了若干攻击策略(即静态和动态故意攻击和随机攻击策略)探讨了系统漏洞,探讨了公差参数和客运率对运输能力损失的影响。构建由198个节点和415个边缘组成的复杂网络以将城市交通系统与级联故障建模。中国的一个现实的城市过境系统被用作证明了发达方法的适用性和有效性的案例。结果表明:(1)交汇站在网络中显示高脆弱性,宏堡·卢尔岛,太平洋站,太平岗站,中南·卢比是最脆弱的站点,应该在运营管理中得到更多关注; (2)故意攻击策略中袭击的损害比随机攻击中的攻击更重要,表明该方法呈现了识别重要节点的能力; (3)节点之间的度量在于在故意攻击中识别易受攻击的节点的节点将更有效; (4)公差参数的最佳值是[0.8,0.9]的范围,同时保持乘客传输速率在[0.3,0.4]的范围内,可以有效地降低级联故障与最小资源的效果。开发的方法可以用作决策工具,不仅可以评估现有的交通系统中的漏洞,还可以优化新的运输系统的规划。(c)2021 elestvier有限公司保留所有权利。

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