控制理论(社会学)
全状态反馈
可控性
可逆矩阵
数学
因式分解
线性系统
LTI系统理论
国家(计算机科学)
离散时间和连续时间
基质(化学分析)
控制器(灌溉)
计算机科学
应用数学
算法
控制(管理)
人工智能
复合材料
数学分析
材料科学
纯数学
统计
农学
生物
作者
Lixuan Zhang,Xuefei Yang
标识
DOI:10.3934/dcdss.2022022
摘要
<p style='text-indent:20px;'>This paper studies the problem of pole assignment for high-order discrete-time linear systems with multiple state and input delays. When the number of state delays is larger than or equal to that of input delays, an effective predictor feedback controller is proposed based on the augmented technique, and the design process for the feedback gain is also presented. In addition, it is proved that the pole assignment problem is solvable if and only if the solutions to a linear matrix equation are such that a matrix is nonsingular. When the number of state delays is smaller than that of input delays, the original system is first transformed into a delay-free system with keeping the system controllability invariant, and then, the corresponding controller with designable feedback gain is established. To characterize all of the feedback gains, a factorization approach is introduced which can provide full degree of freedom. Numerical examples are employed to illustrate the effectiveness of the proposed approaches.</p>
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