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Detection-based weighted

机译:基于检测的加权

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摘要

This study is concerned with resilient load frequency control (LFC) scheme design of multi-area power systems with communication delay and aperiodic denial-of-service (DoS) attacks. First, to identify DoS attacks, a detection mechanism in the actuator side is proposed which is a time counter measuring the input delay. The identified DoS attacks are constrained by its upper bound of frequency and duration. When DoS attacks are identified, actuator switches to zero-input strategy from hold-input strategy. According to the switching control inputs, switched time delay system model is established to describe the attack influence on LFC system. Further, a criterion of preserving weighted $H_infty $H infinity performance is derived by combining piecewise Lyapunov-Krasovskii functional method with switched system method. Based on the criterion, the resilient control gain is designed by solving a set of LMIs. Finally, numerical simulations are given to verify the validness of the attack detection based resilient LFC scheme.
机译:这项研究涉及具有通信延迟和非周期性拒绝服务(DoS)攻击的多区域电力系统的弹性负载频率控制(LFC)方案设计。首先,为了识别DoS攻击,提出了一种在执行器侧的检测机制,该机制是测量输入延迟的时间计数器。所识别的DoS攻击受到其频率和持续时间上限的限制。识别出DoS攻击后,执行器从保持输入策略切换为零输入策略。根据切换控制输入,建立切换时延系统模型,描述了攻击对LFC系统的影响。此外,通过分段Lyapunov-Krasovskii泛函方法与切换系统方法相结合,得出了保持加权的$ H_ infty $ H无穷大性能的准则。根据该准则,通过求解一组LMI设计弹性控制增益。最后,通过数值仿真验证了基于攻击检测的弹性LFC方案的有效性。

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