针对延迟输入网络攻击的电力系统负荷频率弹性控制

Muhammad Shafique, N. Iqbal
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引用次数: 6

摘要

如今,像智能电网这样的工业控制系统(ICS)既涉及IT基础设施,也涉及开放式通信网络。这使得智能电网容易受到网络攻击,从而对人类生活和经济造成严重影响。本文研究了智能电网负荷频率控制中的时延开关攻击问题。由于攻击者在LFC系统的控制信号通信信道中引入了延迟,TDS攻击可以破坏电力系统的稳定。对控制信道的TDS攻击也称为延迟输入攻击。为了克服这种不利情况,利用基于Lyapnov-Krasovskii (LK)泛函的延迟相关稳定性准则,设计了基于线性矩阵不等式(LMI)的H∞弹性控制器。通过对两区电力系统LFC线性时不变(LTI)模型的数值仿真,验证了所设计控制器的有效性和弹性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Load frequency resilient control of power system against delayed input cyber attack
Nowadays the industrial control systems (ICS) like smart grids involve the IT infrastructure as well as open communication networks. This makes the smart grids vulnerable to cyber attacks which can cause a heavy impact on human life and economy as well. Here, we consider time-delay-switch (TDS) attack on the load frequency control (LFC) of smart grid. TDS attack can destabilize the power system because the adversary introduces the delays in the control signal communication channel of the LFC system. TDS attack on control channel is also termed as delayed input attack. To counter this adverse situation, linear matrix inequality (LMI) based H∞ resilient controller is designed by utilizing the Lyapnov-Krasovskii (LK) functional based delay-dependent stability criteria. The effectiveness and resilience of the designed controller is verified by the numerical simulation on the linear time invariant (LTI) model of LFC for two-area power system.
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