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Adaptive event-triggered control of discrete-time networked systems against randomly occurring infinite distributed delays, random packet losses and sensor saturation

机译:自适应事件触发对离散时间联网系统的控制,无随机发生的无限分布式延迟,随机分组损耗和传感器饱和度

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摘要

The saturation input control problem of discrete-time networked systems via adaptive event-triggered communication scheme is discussed in this paper. The criteria are derived by utilising a new Lyapunov functional to guarantee that the considered networked system with randomly occurring infinite distributed delays, random packet losses and sensor saturation is exponentially stable in mean square sense. A novel adaptive event-triggered law is proposed, which is dependent on the exponentially stable index alpha. The effectiveness of our proposed method is illustrated by both theoretical analysis and numerical simulations.
机译:本文讨论了通过自适应事件触发通信方案的离散时间联网系统的饱和输入控制问题。通过利用新的Lyapunov功能来保证所考虑的网络系统具有随机发生的无限分布式延迟,随机分组损耗和传感器饱和度的COMED网络系统,在均值方面是指数稳定的。提出了一种新颖的自适应事件触发的法律,这取决于指数稳定的指标α。通过理论分析和数值模拟来说明我们所提出的方法的有效性。

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