Weak Decoupled State and Mode Feedback Controller Design for Discrete-Time Markovian Jump Linear Systems

Xinghua Wu, Jin Zhu, Pengfei Jiang
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Abstract

This paper considers the design of a weak decoupled state and mode feedback controller for discrete-time Markovian jump linear systems(MJLSs). The proposed controller consists of two parts. The first part is a state feedback controller, which is used to stabilize the MJLS by utilizing the invariant part of the mode transition probabilities matrix(MTPM) and it can therefore stabilize the MJLS when transition probabilities matrix is partly changed. The second part of the controller is a mode feedback controller, which aims to reduce the stabilization cost on the basis of system stability and it is dependent on only the varying part of the MTPM. Due to the fact that state feedback control and mode feedback control are designed according to the different parts of MTPM, there is no direct relations between them and they are then called “weak decoupled” for this reason. Numerical examples are provided to show the validity of the proposed controller.
离散马尔可夫跳变线性系统的弱解耦状态与模式反馈控制器设计
研究了离散马尔可夫跳变线性系统的弱解耦状态与模式反馈控制器的设计。该控制器由两部分组成。第一部分是状态反馈控制器,该控制器利用模态转移概率矩阵(MTPM)的不变部分来稳定MJLS,从而在转移概率矩阵部分改变时实现MJLS的稳定。控制器的第二部分是模式反馈控制器,它的目的是在系统稳定的基础上降低稳定成本,它只依赖于MTPM的变化部分。由于状态反馈控制和模式反馈控制是根据MTPM的不同部分设计的,因此两者之间没有直接的联系,因此称为“弱解耦”。数值算例表明了所提控制器的有效性。
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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