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A network-based framework for assessing infrastructure resilience: a case study of the London metro system

机译:基于网络的评估基础架构弹性的框架:伦敦地铁系统的案例研究

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摘要

Modern society is increasingly dependent on the stability of a complex system of interdependent infrastructure sectors. It is imperative to build resilience of large-scale infrastructures like metro systems for addressing the threat of natural disasters and man-made attacks in urban areas. Analysis is needed to ensure that these systems are capable of withstanding and containing unexpected perturbations, and develop heuristic strategies for guiding the design of more resilient networks in the future. We present a comprehensive, multi-pronged framework that analyses information on network topology, spatial organization and passenger flow to understand the resilience of the London metro system. Topology of the London metro system is not fault tolerant in terms of maintaining connectivity at the periphery of the network since it does not exhibit small-world properties. The passenger strength distribution follows a power law, suggesting that while the London metro system is robust to random failures, it is vulnerable to disruptions on a few critical stations. The analysis further identifies particular sources of structural and functional vulnerabilities that need to be mitigated for improving the resilience of the London metro network. The insights from our framework provide useful strategies to build resilience for both existing and upcoming metro systems.
机译:现代社会越来越依赖于相互依存的基础设施部门的复杂系统的稳定性。必须建立大规模基础设施(如地铁系统)的弹性,以应对城市中的自然灾害和人为攻击的威胁。需要进行分析以确保这些系统能够承受并包含意外的干扰,并制定启发式策略以指导将来设计更具弹性的网络。我们提出了一个全面的,多管齐下的框架,该框架分析了有关网络拓扑,空间组织和乘客流量的信息,以了解伦敦地铁系统的弹性。伦敦地铁系统的拓扑在保持网络外围的连通性方面不是容错的,因为它不具有小世界特性。乘客强度分布遵循幂定律,这表明尽管伦敦地铁系统对随机故障具有鲁棒性,但也很容易受到一些关键车站的干扰。该分析进一步确定了结构和功能漏洞的特定来源,这些漏洞需要缓解以改善伦敦地铁网络的弹性。我们框架的见解提供了有用的策略,可为现有和即将推出的地铁系统建立弹性。

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