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Impact Assessment and Mitigation of Cyber Attacks on Frequency Stability of Isolated Microgrid Using Virtual Inertia Control

机译:虚拟惯性控制对隔离微电网频率稳定性的网络攻击影响评估和缓解

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The reliance of smart grids on modern communication infrastructure has increased the risk of cyber attacks in modern power systems. Time delay attack is a form of cyber attack that can have drastic effect on the frequency stability of power systems with high penetration of renewable energy sources because of the reduction in overall inertia of the power system. In this paper, a new virtual inertia control strategy that augments the conventional virtual inertia strategy with a virtual damper to reduce the impacts of time delay attacks on the load frequency control loop of the isolated microgrid is proposed. During time delay attack-when the frequency measurement from the phase measurement unit is delayed by an adversary, the proposed strategy provides better frequency control response with reduced oscillations and frequency deviation nadirs, thereby improving the security and stability of the microgrid.
机译:智能电网对现代通信基础设施的依赖增加了现代电力系统中网络攻击的风险。延时攻击是网络攻击的一种形式,由于电力系统的总体惯性降低,它对具有高渗透率的可再生能源的电力系统的频率稳定性产生巨大影响。本文提出了一种新的虚拟惯性控制策略,在虚拟惯性控制策略的基础上增加了虚拟阻尼器,以减少时延攻击对隔离微电网负荷频率控制回路的影响。在时间延迟攻击期间,当来自相位测量单元的频率测量被对手延迟时,所提出的策略可提供更好的频率控制响应,同时减少振荡和频率偏差最低点,从而提高微电网的安全性和稳定性。

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