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Event-Triggered and Self-Triggered H_infty Control of Uncertain Switched Linear Systems

机译:事件触发和自动触发的H_ infty交换线性系统的缩小控制

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This paper studies the problem of event-triggered and self-triggered boldsymbol controls for uncertain switched linear systems with exogenous disturbances whose magnitude is bounded by the system state's norm. With the proposed schemes, the control task is carried out only when the triggering condition is met. That leads to changing and adaptive interexecution intervals and can further reduce the system resource costs to a certain extent. Moreover, to ensure the control performance of the event-triggered switched system, a proof which makes certain that the occurrence of Zeno problem can be prevented is first provided. Then, by adopting the average dwell time method, a set of sufficient conditions for performance analysis is developed. Subsequently, the codesign of controller gains and event-triggering schemes is provided. On the basis of the event-triggered control, a solution to the self-triggered control problem is then presented. It can only utilize the current sampled data to predict the next triggered instant. Finally, in order to test the effectiveness of the proposed methods, numerical simulations are performed.
机译:本文研究了具有外源干扰的不确定开关线性系统的事件触发和自动触发的Boldsymbol控制问题,其幅度由系统状态常态界定的外源干扰。利用所提出的方案,仅在满足触发条件时才执行控制任务。这导致改变和自适应的意图间隔,并进一步降低了一定程度的系统资源成本。此外,为了确保事件触发的切换系统的控制性能,首先提供可以防止ZENO问题的发生的证据。然后,通过采用平均停留时间方法,开发了一组足够的性能分析条件。随后,提供了控制器增益和事件触发方案的代码。在事件触发控制的基础上,呈现对自触发控制问题的解决方案。它只能利用当前采样数据来预测下一个触发的即时。最后,为了测试所提出的方法的有效性,执行数值模拟。

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