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Dynamic event-triggered and guaranteed cost asynchronous control for singular Markov jump systems against deception attacks

机译:动态事件触发并保证成本的异步马尔可夫跳跃系统异步控制,以防止欺骗攻击

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This paper is concerned with the dynamic event-triggered and guaranteed cost asynchronous control problem for singular Markov jump systems (SMJSs) against deception attacks. To reduce the unnecessary data transmission over the network and ensure the security of system, a controller combining dynamic event-triggered scheme (ETS) and deception attacks is proposed. The hidden Markov model (HMM) is utilized to describe asynchronization phenomena between the system modes and the controller modes. The co-design of guranteed cost asynchronous controllers and the dynamic event-triggered scheme is proposed in terms of a group of feasible linear matrix inequalities. The criterion of regular, impulse free and stochastically stable with guranteed cost performance for the closed-loop system is obtained. Finally, a numerical example is given to illustrate the usefulness and effectiveness of the proposed method.
机译:本文关注的是针对欺骗攻击的奇异马尔可夫跳跃系统(SMJS)的动态事件触发和保证成本异步控制问题。为了减少网络上不必要的数据传输并保证系统的安全性,提出了一种结合动态事件触发方案(ETS)和欺骗攻击的控制器。隐马尔可夫模型(HMM)用于描述系统模式和控制器模式之间的异步现象。针对一组可行的线性矩阵不等式,提出了保证成本的异步控制器与动态事件触发方案的协同设计。获得了规则的,无脉冲的,随机稳定的以及闭环系统具有保证的成本性能的判据。最后,通过算例说明了该方法的有效性。

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