解决线性代数方程的控制论方法:连续时间视角

IF 2.1 3区 计算机科学 Q3 AUTOMATION & CONTROL SYSTEMS Systems & Control Letters Pub Date : 2024-05-25 DOI:10.1016/j.sysconle.2024.105822
Yuxin Wu, Deyuan Meng
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引用次数: 0

摘要

在控制理论的应用中,如何用一些控制方法改进数学问题的求解方法是一个很有吸引力的问题。本文旨在结合 "控制设计 "的思想,利用一类线性代数方程(LAE)的连续时间求解器。本文将线性代数方程(LAEs)的求解问题与连续时间系统的两个基本控制问题,即输出跟踪问题和状态观测问题,统一建立了等价关系。然后,分别从输出跟踪和状态观测的角度揭示了 LAE 的性质与连续时间系统的可控性和可观测性之间的等价关系。此外,基于反馈控制设计开发了一种连续时间求解器,通过选择不同的初始条件,可以确定任何(不可)求解 LAE 的所有(最小二乘)解。特别是,针对连续时间求解器提出了得出 LAE 最佳近似解的设计条件。
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Control-theoretic methods for solving linear algebraic equations: A continuous-time perspective

In the applications of control theory, how to improve the solution methods of mathematical problems with some control methods is an attractive problem. This paper aims at exploiting a class of continuous-time solvers for linear algebraic equations (LAEs) via the incorporation of the idea of “control design”. The equivalence is established between the solving problem of LAEs and two basic control problems of continuous-time systems, namely, the output tracking problem and the state observation problem, in a unified manner. Then, the equivalence between the properties of LAEs and the controllability and observability properties of continuous-time systems are disclosed from the perspective of the output tracking and the state observation, respectively. Moreover, a continuous-time solver is developed based on the feedback control design such that all (least squares) solutions to any (un)solvable LAE can be determined by the selection of different initial conditions. Particularly, the design conditions to derive the best approximate solutions to LAEs are presented for the continuous-time solver.

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来源期刊
Systems & Control Letters
Systems & Control Letters 工程技术-运筹学与管理科学
CiteScore
4.60
自引率
3.80%
发文量
144
审稿时长
6 months
期刊介绍: Founded in 1981 by two of the pre-eminent control theorists, Roger Brockett and Jan Willems, Systems & Control Letters is one of the leading journals in the field of control theory. The aim of the journal is to allow dissemination of relatively concise but highly original contributions whose high initial quality enables a relatively rapid review process. All aspects of the fields of systems and control are covered, especially mathematically-oriented and theoretical papers that have a clear relevance to engineering, physical and biological sciences, and even economics. Application-oriented papers with sophisticated and rigorous mathematical elements are also welcome.
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