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Modeling the resilience of critical infrastructure: the role of network dependencies

机译:建模关键基础架构的弹性:网络依赖性的作用

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摘要

Water and wastewater network, electric power network, transportation network, communication network, and information technology network are among the critical infrastructure in our communities; their disruption during and after hazard events greatly affects communities’ well-being, economic security, social welfare, and public health. In addition, a disruption in one network may cause disruption to other networks and lead to their reduced functionality. This paper presents a unified theoretical methodology for the modeling of dependent/interdependent infrastructure networks and incorporates it in a six-step probabilistic procedure to assess their resilience. Both the methodology and the procedure are general, can be applied to any infrastructure network and hazard, and can model different types of dependencies between networks. As an illustration, the paper models the direct effects of seismic events on the functionality of a potable water distribution network and the cascading effects of the damage of the electric power network (EPN) on the potable water distribution network (WN). The results quantify the loss of functionality and delay in the recovery process due to dependency of the WN on the EPN. The results show the importance of capturing the dependency between networks in modeling the resilience of critical infrastructure.
机译:水和废水网络,电力网络,运输网络,通信网络和信息技术网络是我们社区的关键基础设施;它们在危害事件发生期间和之后的中断会极大地影响社区的福祉,经济安全,社会福利和公共卫生。另外,一个网络的中断可能会导致其他网络的中断,并导致其功能降低。本文提出了一种用于依存/依存基础设施网络建模的统一理论方法,并将其纳入六步概率过程中以评估其弹性。方法论和程序都是通用的,可以应用于任何基础设施网络和危害,并且可以对网络之间的不同类型的依赖关系进行建模。作为说明,本文模拟了地震事件对饮用水分配网络功能的直接影响以及电力网络(EPN)损坏对饮用水分配网络(WN)的级联影响。结果量化了由于WN对EPN的依赖性而导致的功能损失和恢复过程中的延迟。结果表明,在建模关键基础架构的弹性时,捕获网络之间的依赖性非常重要。

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