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Blind False Data Attacks Against AC State Estimation Based on Geometric Approach in Smart Grid Communications

机译:智能电网通信中基于几何方法的交流状态估计盲伪数据攻击

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摘要

Electricity is the lifeline of civilization. To reduce carbon impacts associated with electricity generation and delivery, the smart grid can improve the efficiency and reliability of power grids by integrating power systems with modern information and communication technology and control systems. However, based on the integrated infrastructure and two-way communication, the risk and vulnerability in the power grid have increased. In this paper, recent advances in dc blind and stealthy attacks are reported. Moreover, we focus on the false data attacks (FDAs) in smart grids with an emphasis on ac nonlinear grid model. Specifically, we present a more general class of blind attacks based on the geometric approach without any need of the power grid topology and transmission-line admittances. The criteria for successful ac blind and non-blind FDAs are derived. Furthermore, with additional information of hijacked original system states, a targeted ac blind attack that can manipulate the desired state is proposed as well. Simulations confirm the advantages of the proposed approach.
机译:电力是文明的生命线。为了减少与发电和输电有关的碳影响,智能电网可以通过将电力系统与现代信息和通信技术以及控制系统集成在一起来提高电网的效率和可靠性。但是,基于集成基础架构和双向通信,电网中的风险和脆弱性有所增加。本文报道了直流盲和隐身攻击的最新进展。此外,我们专注于智能电网中的虚假数据攻击(FDA),重点是交流非线性电网模型。具体而言,我们提出了一种基于几何方法的更通用的盲目攻击方法,无需任何电网拓扑和传输线导纳。得出了成功的盲人和非盲人FDA的标准。此外,利用被劫持的原始系统状态的其他信息,还提出了可以操纵所需状态的有针对性的盲目攻击。仿真证实了该方法的优点。

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