基于观测器的隔离微电网虚假数据注入攻击检测与缓解方案

A. Aluko, D. Dorrell, E. Ojo
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引用次数: 2

摘要

可再生能源发电份额的持续增加和电力需求的变化使得孤立微电网的频率稳定性不稳定。同样,智能MG中的通信层也容易受到网络攻击,这可能会影响MG元素的物理操作。因此,有必要开发先进的、有弹性的频率控制方案,以减轻可能损害MG频率稳定性的不同扰动的影响。本文将未知输入观测器(UIO)部署在MG的二次频率控制环路中,用于未知输入估计。开发的UIO具有检测和估计网络攻击的能力,并利用估计的网络攻击来反击真实的网络攻击,从而保持MG的稳定性。仿真结果表明,所设计的UIO策略能够保证MG在网络攻击下的无懈可击运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Observer-Based Detection and Mitigation Scheme for Isolated Microgrid Under False Data Injection Attack
The continuous increase in the share of renewable energy generation and varying power demand are rendering the frequency stability of the isolated microgrids (MGs) volatile. Likewise, the communication layer in smart MGs is prone to cyberattacks that may affect the physical operation of the MG elements. Thus, there is a need to develop advanced and resilient frequency control schemes to mitigate the impacts of different perturbations that can compromise the frequency stability of the MG. This paper deploys the unknown input observer (UIO) in the secondary frequency control (SFC) loop of the MG for unknown input estimation. The developed UIO has the capability to detect and estimate cyberattacks and use the estimated cyberattack to counterattack the true cyberattack, thus, maintaining the stability of the MG. The simulation results show that the designed UIO strategy can guarantee the invulnerable operation of the MG in the presence of cyberattacks.
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