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Feasibility study of PRA for critical infrastructure risk analysis

机译:PRA对关键基础设施风险分析的可行性研究

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Probabilistic Risk Analysis (PRA) has been commonly used by NASA and the nuclear power industry to assess risk since the 1970s. However, PRA is not commonly used to assess risk in networked infrastructure systems such as water, sewer and power systems. Other methods which utilise network models of infrastructure such as random and targeted attack failure analysis, N-k analysis and statistical learning theory are instead used to analyse system performance when a disruption occurs. Such methods have the advantage of being simpler to implement than PRA. This paper explores the feasibility of a full PRA of infrastructure, that is one that analyses all possible scenarios as well as the associated likelihoods and consequences. Such analysis is resource intensive and quickly becomes complex for even small systems. Comparing the previously mentioned more commonly used methods to PRA provides insight into how current practises can be improved, bringing the results closer to those that would be presented from PRA. Although a full PRA of infrastructure systems may not be feasible, PRA should not be discarded. Instead, analysis of such systems should be carried out using the framework of PRA to include vital elements such as scenario likelihood analysis which are often overlooked.
机译:NASA和核电工业常用的概率风险分析(PRA)以20世纪70年代以来评估风险。然而,PRA通常不用于评估网络基础设施系统的风险,例如水,下水道和电力系统。利用基础设施网络模型的其他方法,如随机和目标攻击失败分析,N-K分析和统计学习理论,而是用于在发生中断时分析系统性能。这些方法具有比PRA更简单的优点。本文探讨了完整的基础设施PRA的可行性,即分析所有可能的场景以及相关的可能性和后果。这种分析是资源密集型,并且甚至是小型系统的复杂性。比较前面提到的PRA更常用的方法提供了深入了解如何改进当前的实践,使结果更接近那些将从PRA呈现的结果。尽管基础设施系统的完整PRA可能不可行,但不应丢弃PRA。相反,应该使用PRA的框架来执行对这种系统的分析,包括重要元素,例如通常被忽视的情景似然分析。

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