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首页> 外文期刊>Control Theory & Applications, IET >Asynchronous passive dynamic event-triggered controller design for singular Markov jump systems with general transition rates under stochastic cyber-attacks
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Asynchronous passive dynamic event-triggered controller design for singular Markov jump systems with general transition rates under stochastic cyber-attacks

机译:单数马尔可夫跳转系统的异步被动动态事件触发控制器设计,随机网络攻击下的一般转换率

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摘要

This study focuses on the issue of asynchronous passive controller design for singular Markov jump systems with general transition rates under stochastic cyber-attacks. To maximise the utilisation of network resources by reducing unnecessary data transmissions, a dynamic event-triggered rule is properly presented. Assuming that the system might be attacked by two kinds of stochastic cyber-attacks, which are governed by two different functions. The asynchronous fact between the modes of the system and controller is described by the hidden Markov model. The criterion of stochastically admissible with a certain passive performance is established. In the light of a series of linear matrix inequalities, the asynchronous controller and dynamic event-triggered rule are designed simultaneously. A numerical instance under different event-triggered rules is offered to reveal the usefulness and effectiveness of the developed method.
机译:本研究重点介绍,在随机网络攻击下具有一般转换速率的单数马尔可夫跳跃系统的异步被动控制器设计。为了通过减少不必要的数据传输来最大限度地利用网络资源,正确呈现动态事件触发规则。假设系统可能受到两种随机网络攻击的攻击,这些网络攻击由两种不同的功能管理。隐藏的马尔可夫模型描述了系统和控制器模式之间的异步事实。建立了随机禁止随机性能的标准。鉴于一系列线性矩阵不等式,同时设计异步控制器和动态事件触发规则。提供了不同事件触发规则下的数值实例,以揭示开发方法的有效性和有效性。

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