在基于时间的依赖分析中整合弹性:城市关键基础设施的大规模案例研究

V. Rosato, A. D. Pietro, P. Kotzanikolaou, G. Stergiopoulos, Giulio Smedile
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引用次数: 3

摘要

由于关键系统需要承受影响其功能和服务水平的不同类型的扰动,因此弹性是非常重要的要求。特别是在城市关键基础设施中,自然事件的发生可能会影响来自不同部门的其他依赖基础设施的状态,因此此类基础设施对大规模故障的整体恢复能力更为重要。当系统发生扰动时,受影响的系统所提供的服务的质量(水平)会下降,并触发恢复阶段,使系统恢复到正常的运行水平。根据实现的恢复控制,恢复阶段可能遵循不同的增长模型。本文通过整合和评估恢复控制的效果,扩展了先前基于时间的依赖风险分析方法。主要目标是动态地评估恢复随时间的演变,以便确定预期的恢复计划最终将如何影响关键路径的总体风险。拟议的基于恢复意识时间的依赖分析方法被集成到CIPCast决策支持系统中,该系统可以预测由于自然事件导致的风险,以识别脆弱和中断的资产(例如,变电站,电信组件),并测量预期的风险路径。因此,对于参与危机评估的关键基础设施运营商和其他应急管理人员来说,CIPCast非常有价值,可以评估影响关键资产的自然和人为威胁的影响,并规划适当的对策,以降低服务退化的总体风险。建议的方法在一个真实的场景中进行评估,该场景利用了罗马城市的几个基础设施和兴趣点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrating Resilience in Time-based Dependency Analysis: A Large-Scale Case Study for Urban Critical Infrastructures
As critical systems shall withstand different types of perturbations affecting their functionalities and their service level, resilience is a very important requirement. Especially in an urban critical infrastructures where the occurrence of natural events may influence the state of other dependent infrastructures from various different sectors, the overall resilience of such infrastructures against large scale failures is even more important. When a perturbation occurs in a system, the quality (level) of the service provided by the affected system will be reduced and a recovery phase will be triggered to restore the system to its normal operation level. According to the implemented recovery controls, the restoration phase may follow a different growth model. This paper extends a previous time-based dependency risk analysis methodology by integrating and assessing the effect of recovery controls. The main goal is to dynamically assess the evolution of recovery over time, in order to identify how the expected recovery plans will eventually affect the overall risk of the critical paths. The proposed recovery-aware time-based dependency analysis methodology was integrated into the CIPCast Decision Support System that enables risk forecast due to natural events to identify vulnerable and disrupted assets (e.g., electric substations, telecommunication components) and measure the expected risk paths. Thus, CIPCast can be valuable to Critical Infrastructure Operators and other Emergency Managers involved in a crisis assessment to evaluate the effect of natural and anthropic threats affecting critical assets and plan proper countermeasures to reduce the overall risk of degradation of services. The proposed methodology is evaluated in a real scenario, which utilizes several infrastructures and Points of Interest of the city of Rome.
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