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Static output-feedback stabilization of discrete-time Markovian jump linear systems: A system augmentation approach

机译:离散时间马尔可夫跳跃线性系统的静态输出反馈镇定:一种系统增强方法

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摘要

This paper studies the static output-feedback (SOF) stabilization problem for discrete-time Markovian jump systems from a novel perspective. The closed-loop system is represented in a system augmentation form, in which input and gain-output matrices are separated. By virtue of the system augmentation, a novel necessary and sufficient condition for the existence of desired controllers is established in terms of a set of nonlinear matrix inequalities, which possess a monotonic structure for a linearized computation, and a convergent iteration algorithm is given to solve such inequalities. In addition, a special property of the feasible solutions enables one to further improve the solvability via a simple D-K type optimization on the initial values. An extension to mode-independent SOF stabilization is provided as well. Compared with some existing approaches to SOF synthesis, the proposed one has several advantages that make it specific for Markovian jump systems. The effectiveness and merit of the theoretical results are shown through some numerical examples. © 2010 Elsevier Ltd. All rights reserved.
机译:本文从新颖的角度研究了离散时间马尔可夫跳跃系统的静态输出反馈(SOF)镇定问题。闭环系统以系统扩充形式表示,其中输入矩阵和增益输出矩阵是分离的。通过系统扩充,根据一组非线性矩阵不等式建立了一个新颖的充要条件,该控制器具有单调结构用于线性化计算,并给出了收敛迭代算法来求解。这样的不平等。此外,可行解决方案的特殊属性使人们可以通过对初始值进行简单的D-K类型优化来进一步提高可解性。还提供了对与模式无关的SOF稳定的扩展。与一些现有的SOF合成方法相比,提出的方法具有几个优点,使其特别适用于Markovian跳跃系统。通过一些数值例子说明了理论结果的有效性和优点。 ©2010 ElsevierLtd。保留所有权利。

著录项

  • 作者

    Shu, Z; Lam, J; Xiong, J;

  • 作者单位
  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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