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Node Importance Evaluation of Cyber-Physical System under Cyber-Attacks Spreading

机译:网络攻击下的网络物理系统节点重要性评估

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The study of cyber-attacks, and in particular the spread of attack on the power cyber-physical system, has recently attracted considerable attention. Identifying and evaluating the important nodes under the cyber-attack propagation scenario are of great significance for improving the reliability and survivability of the power system. In this paper, we improve the closeness centrality algorithm and propose a compound centrality algorithm based on adaptive coefficient to evaluate the importance of single-layer network nodes. Moreover, we quantitatively calculated the decouple degree of cascading failures caused by exposed nodes formed by attack propagation. At last, experiments based on the IEEE 57 test system show that the proposed compound centrality algorithm can match the cyber-attack propagation scenario well, and we give the importance values of the nodes in a specific attack scenario.
机译:对网络攻击的研究,特别是对电力网络系统的攻击传播,最近引起了相当大的关注。 在网络攻击传播场景下识别和评估重要节点对于提高电力系统的可靠性和生存性具有重要意义。 在本文中,我们改善了基于自适应系数的亲密度数算法,提出了一种基于自适应系数的化合物中心算法来评估单层网络节点的重要性。 此外,我们定量计算由攻击传播形成的暴露节点引起的级联故障的分离程度。 最后,基于IEEE 57测试系统的实验表明,所提出的化合物中心算法可以良好地匹配网络攻击传播场景,并且我们在特定攻击方案中提供了节点的重要性值。

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