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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >Revealing Cascading Failure Vulnerability in Power Grids Using Risk-Graph
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Revealing Cascading Failure Vulnerability in Power Grids Using Risk-Graph

机译:使用风险图揭示电网中的级联故障漏洞

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摘要

Security issues related to power grid networks have attracted the attention of researchers in many fields. Recently, a new network model that combines complex network theories with power flow models was proposed. This model, referred to as the extended model, is suitable for investigating vulnerabilities in power grid networks. In this paper, we study cascading failures of power grids under the extended model. Particularly, we discover that attack strategies that select target nodes (TNs) based on load and degree do not yield the strongest attacks. Instead, we propose a novel metric, called the risk graph, and develop novel attack strategies that are much stronger than the load-based and degree-based attack strategies. The proposed approaches and the comparison approaches are tested on IEEE 57 and 118 bus systems and Polish transmission system. The results demonstrate that the proposed approaches can reveal the power grid vulnerability in terms of causing cascading failures more effectively than the comparison approaches.
机译:与电网网络有关的安全性问题已引起许多领域研究人员的关注。最近,提出了一种将复杂网络理论与潮流模型相结合的新网络模型。该模型称为扩展模型,适用于调查电网网络中的漏洞。在本文中,我们研究了扩展模型下的电网连锁故障。特别是,我们发现基于负载和程度选择目标节点(TN)的攻击策略不会产生最强的攻击。取而代之的是,我们提出了一种称为风险图的新指标,并开发了比基于负载和基于度的攻击策略更强大的新颖攻击策略。在IEEE 57和118总线系统以及波兰传输系统上测试了所提出的方法和比较方法。结果表明,与比较方法相比,所提出的方法可以更有效地揭示级联故障的电网脆弱性。

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