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Bilevel Model for Analyzing Coordinated Cyber-Physical Attacks on Power Systems

机译:分析电力系统协调性网络物理攻击的双层模型

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This paper analyzes a coordinated cyber-physical attack on power systems, which could lead to undetectable line outages. Coordinated with physical attacks that cause line outages, the two-step cyberattacks comprising topology preserving and load redistribution attacks could mask and potentially exasperate outages to trigger cascading failures. These coordinated cyber-physical attacks are analyzed in a proposed bilevel model, which aims at identifying the most damaging and undetectable physical attacks constrained by attackers' total budget. After being transformed into a mixed-integer linear programming problem, the proposed bilevel model is solved by a rigorous two-stage solution approach. This paper also discusses the relevant countermeasure strategies. The proposed model, the solution algorithm, and the effectiveness of countermeasures are examined by case studies based on the IEEE 14- and 118-bus test systems.
机译:本文分析了对电力系统的协调性网络物理攻击,这可能导致无法检测到的线路中断。与导致线路中断的物理攻击相协调,包含拓扑保留和负载重新分配攻击的两步网络攻击可以掩盖并可能激怒中断,从而触发级联故障。将在建议的双层模型中分析这些协调的网络物理攻击,该模型旨在确定受攻击者总预算约束的最具破坏性和不可检测的物理攻击。在转化为混合整数线性规划问题之后,通过严格的两阶段求解方法解决了所提出的双层模型。本文还讨论了相关的对策策略。通过基于IEEE 14总线和118总线测试系统的案例研究,对提出的模型,解决方案算法和对策的有效性进行了研究。

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