Accurate vulnerability assessment of critical infrastructure systems is cardinal to enhance infrastructure resilience. Unlike traditional approaches, this paper proposes a novel infrastructure vulnerability assessment framework that accounts for: various types of infrastructure interdependencies including physical, logical and geographical from a holistic perspective; lack of/incomplete information on supply-demand flow characteristics of interdependent infrastructure; and, unavailability/inadequate data on infrastructure network topology and/or interdependencies. Specifically, this paper models multi-infrastructure vulnerabilities leveraging simulation-based hybrid approach coupled with time-dependent Bayesian network analysis while considering cascading failures within and across CIS networks, under incomplete information. Existing synthetic data on electricity, water and supply chain networks are used to implement/validate the framework. Infrastructure vulnerabilities are depicted on a geo-map using Voronoi polygons. Our results indicate that infrastructure vulnerability is inversely proportional to the number of redundancies inbuilt in the infrastructure system, indicating that allocating resources to add redundancies in an existing infrastructure system is essential to reduce its risk of failure. It is observed that higher the initial failure rate of the components, higher is the vulnerability of the infrastructure, highlighting the importance of modernizing and upgrading the infrastructure system aiming to reduce the initial failure probabilities. Our results also underline the importance of collaborative working and sharing the necessary information among multiple infrastructure systems, aiming towards minimizing the overall failure risk of interdependent infrastructure systems.
翻译:与传统方法不同,本文件提出一个新的基础设施脆弱性评估框架,其中考虑到以下因素:各种基础设施的相互依存关系,包括从整体角度考虑实际、逻辑和地理因素;缺乏/不完整关于相互依存基础设施的供需流动特点的信息;基础设施网络地形和/或相互依存性的数据不足/不足。具体地说,本文件提出的多种基础设施脆弱性模型利用模拟混合方法,加上基于时间的巴伊西亚网络分析,同时考虑独联体网络内部和跨网络之间在信息不完整的情况下的累积失灵。现有的电力、水和供应链网络综合数据被用来执行/验证框架。利用Voronoi多边形图对基础设施脆弱性的地理图进行描述。我们的结果表明,基础设施脆弱性与基础设施系统中的冗余数量成反正成正成正,表明为在现有基础设施系统中增加冗余现象而调拨资源对于降低其失败风险至关重要。注意到,电力、水和供应链网络的现有合成数据在电力、水和供应链网络中的累积失灵率较高,用于落实/验证框架。利用Voronoi多边形形形形形形形形形形形形形形图描述基础设施的脆弱程度。我们合作性基础设施升级工作失败的重要性也突出。