Towards optimal PMU placement against data integrity attacks in smart grid

Qingyu Yang, Rui Min, Dou An, Wei Yu, Xinyu Yang
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引用次数: 7

Abstract

State estimation plays a critical role in self-detection and control of the smart grid. Data integrity attacks (also known as false data injection attacks) have shown significant potential in undermining the state estimation of power systems, and corresponding countermeasures have drawn increased scholarly interest. In this paper, we consider the existing least-effort attack model that computes the minimum number of sensors that must be compromised in order to manipulate a given number of states, and develop an effective greedy-based algorithm for optimal PMU placement to defend against data integrity attacks. We develop a greedy-based algorithm for optimal PMU placement, which can not only combat data integrity attacks, but also ensure the system observability with low overhead. The experimental data obtained based on IEEE standard systems demonstrates the effectiveness of the proposed defense scheme against data integrity attacks.
针对智能电网中数据完整性攻击的PMU优化配置
状态估计在智能电网的自检测和自控制中起着至关重要的作用。数据完整性攻击(也称为虚假数据注入攻击)在破坏电力系统状态估计方面显示出巨大的潜力,相应的对策引起了越来越多的学者的兴趣。在本文中,我们考虑了现有的最小努力攻击模型,该模型计算了为了操纵给定数量的状态而必须破坏的最小传感器数量,并开发了一种有效的基于贪婪的算法,用于最佳PMU放置,以防御数据完整性攻击。本文提出了一种基于贪婪的PMU最优放置算法,该算法既能对抗数据完整性攻击,又能以较低的开销保证系统的可观察性。基于IEEE标准系统的实验数据验证了该防御方案对数据完整性攻击的有效性。
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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