电力系统网络物理攻击的分布式估计与检测

Ariana S. Minot, Hongbo Sun, D. Nikovski, Jinyun Zhang
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引用次数: 3

摘要

由相量测量单元(pmu)实现的动态状态估计为改进电网中网络物理攻击的检测提供了新的机会。估计和攻击检测的分布式方法有许多优点,例如减少处理时间和提高安全性,并且对于大型网络来说是必要的。在这项工作中,我们提出了一种基于PMU测量数据的全分布式动态状态估计算法。动态状态估计与基于创新的攻击检测方案相结合,限制了通信开销。我们的工作的一个吸引人的特点是,每个控制区域利用一个局部模型的降维。我们的算法设计使用状态协方差矩阵的近似值,它允许在计算、通信和准确性之间进行权衡。在数值实验中,我们证明了这种方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributed Estimation and Detection of Cyber-Physical Attacks in Power Systems
Dynamic state estimation, enabled by phasor measurement units (PMUs), opens new opportunities to improve detection of cyber-physical attacks in power networks. Distributed approaches to estimation and attack detection have many advantages, such as reduced processing times and increased security, and are arguably necessary for large size networks. In this work, we present a fully-distributed dynamic state estimation algorithm using PMU measurement data. The dynamic state estimation is jointly designed with an innovation-based attack detection scheme to limit communication overhead. An attractive feature of our work is that each control area utilizes a local model of reduced dimension. The design of our algorithm uses an approximation to the state covariance matrix, which allows for a trade-off between computation, communication, and accuracy. In numerical experiments, we demonstrate the effectiveness of this approach.
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