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Robustness of the western United States power grid under edge attack strategies due to cascading failures

机译:级联故障导致边缘攻击策略下的美国西部电网的鲁棒性

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摘要

Power systems are the basic support of modern infrastructures and protecting them from random failures or intentional attacks is an active topic of research in safety science. This paper is motivated by the following two related problems about cascading failures on power grids: efficient edge attack strategies and lower cost protections on edges. Applying the recent cascading model by adopting a local load redistribution rule, where the initial load of an edge y is (k_ik_j)~θ with k_i and k_j being the degrees of the nodes connected by the edge, we investigate the performance of the power grid of the western United States subject to three intentional attacks. Simulation results show that the effects of different attacks for the network robustness against cascading failures have close relations with the tunable parameter θ. Particularly, the attack on the edges with the lower load in the case of θ < 1.4 can result in larger cascading failures than the one on the edges with the higher load. In addition, compared with the other two attacks, a new attack, i.e., removing the edges with the smallest proportion between the total capacities of the neighboring edges of and the capacity of the attacked edge, usually are prone to trigger cascading failures over the US power grid. Our findings will be not only helpful to protect the key edges selected effectively to avoid cascading-failure-induced disasters, but also useful in the design of high-robustness and low-cost infrastructure networks.
机译:电力系统是现代基础设施的基本支持,保护它们免受随机故障或故意攻击是安全科学研究的一个活跃主题。本文受到以下有关电网级联故障的两个相关问题的启发:有效的边缘攻击策略和较低的边缘保护成本。通过采用局部负载重新分配规则应用最近的级联模型,其中边y的初始负载为(k_ik_j)〜θ,其中k_i和k_j是由边连接的节点的度数,我们研究了电网的性能美国西部的遭受三次故意攻击。仿真结果表明,不同攻击对网络级联故障鲁棒性的影响与可调参数θ密切相关。特别是,在θ<1.4的情况下,对负载较低的边缘的攻击可能会导致比负载较高的边缘更大的级联故障。另外,与其他两种攻击相比,新的攻击(即以相邻边缘的总容量与被攻击边缘的容量之间的比例最小的边缘删除)通常容易引发美国级联故障电网。我们的发现不仅有助于保护有效选择的关键方面,以避免级联故障引发的灾难,而且对设计高可靠性和低成本的基础架构网络也很有用。

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