Intrusion Detection for Cybersecurity of Power Electronics Dominated Grids: Inverters PQ Set-Points Manipulation

Ahmad Khan, Mohsen Hosseinzadehtaher, M. Shadmand, Danish Saleem, H. Abu-Rub
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引用次数: 11

Abstract

This work provides cybersecurity analytics for a high photovoltaic (PV) penetrated distribution network, representing future power electronics dominated grid (PEDG). Firstly, the impact of active and reactive power (PQ) set-points manipulation on the network is studied. Then, an intrusion detection system (IDS) is developed for identifying the potentially compromised PV inverters in the network. The proposed IDS is based on defining the normal, safe, and abnormal operation regions of the PV inverters from point of view of the steady state voltage stability of the network. These three-operation regions are identified by utilizing active power, reactive power, and voltage (PQV) limits of each specific grid-following inverter in the network. Each grid-following inverter’s PQV contour includes the information of network topology, inverter ratings, and inverter controller. The developed PQ limits are integrated into the centralized secondary control layer for realization of the proposed IDS. Furthermore, the proposed secondary control layer is capable of providing remedial actions during an anomaly event to enhance the grid resiliency. The theoretical analyses are verified by several attack scenarios for a network of grid-following inverters.
电力电子主导电网的网络安全入侵检测:逆变器PQ设定点操纵
这项工作为一个高光伏(PV)渗透的配电网络提供了网络安全分析,代表了未来的电力电子主导电网(PEDG)。首先,研究了有功和无功功率(PQ)设定点操作对网络的影响。然后,开发了一种入侵检测系统(IDS),用于识别网络中潜在的受损光伏逆变器。本文提出的IDS是基于从电网稳态电压稳定性的角度定义光伏逆变器的正常、安全、异常运行区域。通过利用网络中每个特定电网跟随逆变器的有功功率、无功功率和电压(PQV)限制来确定这三个操作区域。每个随网逆变器的PQV轮廓包括网络拓扑、逆变器额定和逆变器控制器的信息。将开发的PQ限制集成到集中的二级控制层中,以实现所提出的IDS。此外,所提出的二级控制层能够在异常事件期间提供补救措施,以增强电网的弹性。理论分析通过电网跟随逆变器网络的几种攻击场景进行了验证。
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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