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Mean-square exponential stabilization of packet- based networked systems with time-varying transmission delays, packet losses and input missing

机译:基于数据包的网络系统的平均方指数稳定,具有时变传输延迟,包丢失和输入缺失

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This paper is concerned with the mean-square exponential stabilization of packet-based networked systems with time-varying transmission delays, packet losses and input missing. Based on a multivariate i.i.d. model of input delays and a Bernoulli model of input missing, the packet-based networked system is formulated as a switching system with multiple subsystems of different input delays. The sufficient fast-switching conditions are directly established for the closed-loop mean-square exponential stability via an appropriate Lyapunov-Krasovskii approach different from average dwell time approach. The resulting controller design method can be obtained by cone complementarity linearization (CCL). Numerical example is also given to substantiate the effectiveness of our results.
机译:本文涉及具有时变传输延迟,分组损耗和输入缺失的基于数据包的网络系统的平均方形指数稳定。基于多变量i.i.d.输入延迟模型和输入缺失的伯努利模型,基于数据包的网络系统作为具有不同输入延迟的多个子系统的交换系统。通过适当的Lyapunov-Krasovskii方法与平均停留时间方法不同,直接建立足够快的快速切换条件的闭环均方指数稳定性。由此产生的控制器设计方法可以通过锥形互补线性化(CCL)获得。还提供了数值例子来证实我们的结果的有效性。

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