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An Optimal Defense Strategy Against Data Integrity Attacks In Smart Grids

机译:智能电网中数据完整性攻击的最佳防御策略

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Due to several economical and technological factors, the integration of distributed microgrids into power networks is growing fast. In this paper, the impacts of false data injection attacks on power generation of distributed microgrids are considered. It is shown that the optimal power generation of distributed microgrids depends on the sensor measurements when economical factors as well as voltage angle regulation at buses are taken into account. Consequently, the attacker is able to change the optimal behavior of microgrids by spoofing the sensor measurements. The effects of the false data injection attacks on the behavior of microgrids in the power network are studied in a game theoretic framework. The interaction between the attacker and the system defender in a power network with multiple areas is considered as a zero-sum Markov game. The game solution specifies the optimal proportion of the times that the attacker and defender should attack and defend different measurements, respectively. The effectiveness of the proposed approach and properties of the game are studied through simulation studies.
机译:由于若干经济和技术因素,分布式微电网将分布式微电网集成到电力网络中的快速增长。本文认为,考虑了假数据注入攻击对分布式微电网发电的影响。结果表明,分布式微电网的最佳发电取决于当经济因素以及公共汽车上的电压角调节时的传感器测量。因此,攻击者能够通过欺骗传感器测量来改变微电网的最佳行为。在游戏理论框架中研究了假数据注射攻击对电网中微电网行为的影响。攻击者与系统防御者之间的互动在具有多个区域的电力网络中被认为是零和马尔可夫游戏。游戏解决方案指定攻击者和后卫应该分别攻击和捍卫不同测量的最佳比例。通过模拟研究研究了拟议方法和比赛的性质的有效性。

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