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Vulnerability analysis of interdependent infrastructure systems under edge attack strategies

机译:边缘攻击策略下相互依赖的基础架构系统的漏洞分析

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摘要

Infrastructure systems construct the cornerstone of modern society, they become more and more interconnected and interdependent on multiple levels. Therefore protecting them from various disturbances become an active topic of research in safety science. This paper takes power and gas pipeline systems as example and focuses on the following problems: edge attack strategies and critical components. Applying network model the authors analyse interdependent responses under three types of edge disturbance strategies, and give a method for ranking critical components. Meanwhile, different interface design strategies are illustrated to minimize cascading failures. It has shown that the effects of different attacks on systems connectivity against cascading failures have close relations with the tolerate parameter. In addition, the results show interdependent systems with degree based interfaces provide good stability and good performance. Simultaneously it is represented that critical components for independent cases are those with high loads and connections. However, due to interdependency, critical components for interdependent cases have some differences compared to independent ones and can result in more performance losses, they should be protected with prior consideration. Provided by the results of the research, it is helpful to better shape an expansion of the systems, infrastructure owners could model different event scenarios and assess their impact on the systems.
机译:基础设施系统构成了现代社会的基石,它们在多个层次上变得越来越相互关联和相互依存。因此,保护​​它们免受各种干扰成为安全科学研究的一个活跃主题。本文以电力和天然气管道系统为例,重点研究以下问题:边缘攻击策略和关键组件。应用网络模型,作者分析了三种类型的边缘扰动策略下的相互依赖响应,并给出了对关键分量进行排序的方法。同时,说明了不同的接口设计策略,以最大程度地减少级联故障。结果表明,针对级联故障的不同攻击对系统连接性的影响与容忍参数密切相关。另外,结果表明具有基于度的接口的相互依赖的系统提供了良好的稳定性和良好的性能。同时表示,独立案例的关键组件是具有高负载和高连接的组件。但是,由于相互依存,相互依存的案例的关键组件与独立的案例相比存在一些差异,并且可能导致更多的性能损失,因此应事先加以保护。根据研究结果提供的信息,有助于更好地塑造系统的扩展,基础架构所有者可以对不同的事件场景进行建模并评估其对系统的影响。

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