Feedback stabilization of uncertain systems using a stochastic digital link

N. C. Martins, M. Dahleh, N. Elia
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引用次数: 21

Abstract

We study the stabilizability of uncertain systems in the presence of finite capacity feedback. Motivated by the structure of communication networks, we consider a stochastic digital link that sends words whose size is governed by a random process. Such link is used to transmit state measurements between the plant and the controller. We derive necessary and sufficient conditions for the internal and the external stabilizability of the feedback loop. In accordance with previous publications, stabilizability of unstable plants is possible if and only if the link's average transmission rate is above a positive critical value. In our formulation the plant and the link can be stochastic. In addition, stability in the presence of uncertainty in the plant is analyzed using a small-gain argument. We show that the critical average transmission rate, for stabilizability, depends on the description of uncertainty and the statistical properties of the plant as well as the link.
基于随机数字链路的不确定系统反馈镇定
研究了有限容量反馈下不确定系统的稳定性问题。受通信网络结构的启发,我们考虑了一个随机数字链接,它发送的单词的大小由一个随机过程控制。这种链路用于在设备和控制器之间传输状态测量。给出了反馈回路内外稳定的充分必要条件。根据以前的出版物,当且仅当链路的平均传输速率高于正临界值时,不稳定植物的稳定性是可能的。在我们的公式中,装置和环节可以是随机的。此外,还利用小增益参数分析了存在不确定性时系统的稳定性。我们表明,对于稳定性而言,临界平均传输速率取决于不确定性的描述和设备以及链路的统计特性。
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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