Resilient Event-Triggered Load Frequency Control for Cyber-Physical Power Systems Under DoS Attacks

服务拒绝攻击 控制理论(社会学) 电力系统 控制器(灌溉) 自动频率控制 计算机科学 信息物理系统 控制系统 控制(管理) 工程类 功率(物理) 电信 互联网 生物 操作系统 电气工程 物理 万维网 人工智能 量子力学 农学
作者
Kang‐Di Lu,Zheng‐Guang Wu
出处
期刊:IEEE Transactions on Power Systems [Institute of Electrical and Electronics Engineers]
卷期号:38 (6): 5302-5313 被引量:39
标识
DOI:10.1109/tpwrs.2022.3229667
摘要

In cyber-physical power systems (CPPSs), additional control as the compensating control plays a very important part in load frequency control (LFC) systems. The additional control in the LFC system is constrained by limited communication resources and cyber-attacks, which may cause performance degradation or destabilize the system. Accordingly, this paper proposes resilient event-triggered LFC for CPPSs with an additional control loop under denial-of-service (DoS) attacks. Firstly, a resilient event-triggered communication scheme is presented to reduce the occupation of communication resources under DoS attacks in the additional control loop. Then, different from existing event-triggered LFC systems, this paper establishes a novel switched LFC system model, where the resilient event generator is integrated into an additional control loop when suffering from DoS attacks. It is the first time that the additional control loop of the LFC system simultaneously considers communication resources and cyber-security. Furthermore, we derive exponential stabilization criteria by applying the Lyapunov stability theory based on the established model. Criteria are derived to obtain the weighting matrix and controller gain simultaneously by applying the linear matrix inequality technique. Finally, a one-area and two multi-area CPPSs with the additional control loop under DoS attacks are used to testify the availability of the proposed resilient event-triggered LFC scheme.

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