基于线性潮流模型的电压安全负荷重分配攻击

Zelin Liu, Tao Liu, Yue Song, D. J. Hill
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引用次数: 0

摘要

负载重分配攻击(LRA)是现代电力系统中一种典型的隐性虚假数据注入攻击。传统的LRA主要通过改变负载母线和支路上的有功功率测量单元来增加系统运行成本。本文提出了一种新型的LRA,其目的是破坏某一目标母线的节点电压。在我们的新模型中,攻击资源不仅限于有功,而且还包括无功,以发动强大的攻击。此外,为了降低模型的复杂度,还引入了线性潮流模型。在IEEE 30总线系统上的仿真验证了该攻击策略的有效性和优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Linear Power Flow Model Based Load Redistribution Attack on Voltage Security
Load redistribution attack (LRA) has been arisen as one of the typical stealth false data injection attacks (FDIA) in modern power systems. Traditional LRA focuses on altering the active power measurement unit on load buses and branches to increase the system operating cost. This paper proposes a new type of LRA that aims to sabotage the nodal voltage of certain target bus. In our new model, attack resources are not only limited to active power, but reactive power is also included to launch a powerful attack. Moreover, a linear power flow model is introduced to reduce the complexity of the model. Simulations on IEEE 30-buses system has proved the effectiveness and advantages of the new attack strategy.
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