Power Electronic Attack Targeting Relay Protection and Corresponding Detection Method

Luyu Wang, Wenjun Bi, Zhixian Wang, Kaifeng Zhang
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Abstract

Relay protection is an important part to maintain the safe operation of the power system, so it will become the target of attackers. With the development of cyber-physical system (CPS), researchers are mainly based on the network communication layer to study the attack modes that make relay protection devices fail and the corresponding defense detection. In this paper, from the perspective of peripheral power electronic equipment, it is found that the complex power electronics attack (PE-attack) can be implemented by using the powerful control function of power electronic devices, and indirect attack on relay protection can be realized, thus seriously threatening its safe operation. Taking the distributed photovoltaic power generation system as an example, it is verified that this indirect attack can really have a destructive impact on the power system. In order to deal with PE-attacks, this paper proposes an attack detection method based on directed acyclic graph SVMs (DAG-SVMs), with the time series of three-phase current data as feature vectors, PE-attacks can be detected quickly and effectively through simulation experiments.
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电力电子攻击目标继电保护及检测方法
继电保护是维持电力系统安全运行的重要组成部分,因此会成为攻击者的攻击目标。随着网络物理系统(CPS)的发展,研究人员主要基于网络通信层来研究导致继电保护设备失效的攻击方式以及相应的防御检测。本文从外围电力电子设备的角度出发,发现利用电力电子设备强大的控制功能,可以实现复杂电力电子攻击(pe攻击),可以实现对继电保护的间接攻击,严重威胁其安全运行。以分布式光伏发电系统为例,验证了这种间接攻击确实可以对电力系统产生破坏性影响。为了应对pe攻击,本文提出了一种基于有向无环图支持向量机(dag - svm)的攻击检测方法,以三相电流数据的时间序列为特征向量,通过仿真实验可以快速有效地检测出pe攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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