Stochastic stability of sampled data systems with a jump linear controller

O. González, H. Herencia-Zapana, W. Gray
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Abstract

In this paper an equivalence between the stochastic stability of a sampled-data system and its associated discrete-time representation is established. The sampled-data system consists of a deterministic, linear, time-invariant, continuous-time plant and a stochastic, linear, time-invariant, discrete-time, jump linear controller. The jump linear controller models computer systems and communication networks that are subject to stochastic upsets or disruptions. This sampled-data model has been used in the analysis and design of fault-tolerant systems and computer-control systems with random communication delays without taking into account the inter-sample response. This paper shows that the known equivalence between the stability of a deterministic sampled-data system and the associated discrete-time representation holds even in a stochastic framework.
具有跃变线性控制器的抽样数据系统的随机稳定性
本文建立了抽样数据系统的随机稳定性与其相关的离散时间表示之间的等价关系。采样数据系统由一个确定的、线性的、时不变的连续时间控制器和一个随机的、线性的、时不变的、离散的、跃变的线性控制器组成。跃变线性控制器对受随机扰动或中断影响的计算机系统和通信网络进行建模。该抽样数据模型已被用于分析和设计具有随机通信延迟的容错系统和计算机控制系统,而不考虑样本间响应。本文证明了确定性采样数据系统的稳定性与相关的离散时间表示之间的已知等价性即使在随机框架中也成立。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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