Dynamic event-based dissipative asynchronous control for T–S fuzzy singular Markov jump LPV systems against deception attacks

被引:0
|
作者
Mingqi Xing
Yanqian Wang
Guangming Zhuang
Minsong Zhang
机构
[1] Qingdao University of Technology,School of Information and Control Engineering
[2] Liaocheng University,School of Mathematical Sciences
[3] Hubei University of Arts and Science,Department of Mathematice and Statistics
来源
Nonlinear Dynamics | 2021年 / 103卷
关键词
Dynamic event-triggered transmission protocol; T–S fuzzy singular Markov jump linear parameter-varying systems; Cyber-physical systems; General transition rates; Deception-attacks;
D O I
暂无
中图分类号
学科分类号
摘要
In this article, the issue of dissipative asynchronous control for continuous-time T–S fuzzy singular Markov jump linear parameter-varying systems against dual deception attacks under the dynamic event-triggered transmission protocol (DETP) is investigated. Firstly, the DETP is offered to further abate the channel congestion caused by the limited bandwidth. Meanwhile, the mutually independent random variables subject to Bernoulli distribution are utilized to model the dual deception attacks, which can destroy the integrity of the considered system to some degree. Besides, since the controller can not accurately receive the system information, a hidden Markov model is established to depict the asynchronous phenomenon. Specifically, in the light of the parameter-dependent Lyapunov functional, the stochastic admissible criterion of the closed-loop system with certain dissipative performance and uncertain transition rates is obtained. Ulteriorly, based on the parameter-dependent linear matrix inequalities, a cooperative design technique of asynchronous controller and the weighting matrix of the DETP is proposed. Finally, two examples of chaotic systems and electric truck-trailer systems under the DETP are given to illustrate the feasibility of the proposed method.
引用
收藏
页码:1709 / 1731
页数:22
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