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Quantitative Analysis of Load Redistribution Attacks in Power Systems

机译:电力系统负荷再分配攻击的定量分析

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Cyber security is becoming an area of growing concern in the electric power industry with the development of smart grid. False data injection attack, which is against state estimation through SCADA network, has recently attracted wide research interests. This paper further develops the concept of load redistribution (LR) attack, a special type of false data injection attack. The damage of LR attacks to power system operations can manifest in an immediate or a delayed fashion. For the immediate attacking goal, we show in this paper that the most damaging attack can be identified through a max-min attacker-defender model. Benders decomposition within a restart framework is used to solve the bilevel immediate LR attack problem with a moderate computational effort. Its effectiveness has been validated by the Karush-Kuhn-Tucker (KKT)-based method solution in our previous work. For the delayed attacking goal, we propose a trilevel model to identify the most damaging attack and transform the model into an equivalent single-level mixed-integer problem for final solution. In summary, this paper enables quantitative analysis of the damage of LR attacks to power system operations and security, and hence provides an in-depth insight on effective attack prevention when resource budgets are limited. A 14-bus system is used to test the correctness of the proposed model and algorithm.
机译:随着智能电网的发展,网络安全正成为电力行业日益关注的领域。反对通过SCADA网络进行状态估计的错误数据注入攻击最近引起了广泛的研究兴趣。本文进一步发展了负载重分配(LR)攻击的概念,这是一种特殊类型的错误数据注入攻击。 LR攻击对电力系统运行的损害可以立即或延迟的方式表现出来。对于近期的攻击目标,我们在本文中表明,可以通过最大-最小攻击者-防御者模型识别出最具破坏性的攻击。重新启动框架内的Benders分解用于以适度的计算量来解决双层立即LR攻击问题。在我们之前的工作中,基于Karush-Kuhn-Tucker(KKT)的方法解决方案已验证了其有效性。对于延迟的攻击目标,我们提出了一个三级模型来识别最具破坏性的攻击,并将该模型转换为等效的单级混合整数问题以最终解决。总之,本文可以定量分析LR攻击对电力系统运行和安全的损害,从而在资源预算有限的情况下提供了对有效预防攻击的深入了解。 14总线系统用于测试所提出的模型和算法的正确性。

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