Fault-tolerant predictive control for Markov Linear Systems

Manuel A. Hernandez-Mejias, C. Ariño, A. Sala, A. Querol
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引用次数: 1

Abstract

This work considers fault-tolerant control (FTC) for discrete-time Markov Jump Linear System (MJLS) subject to constraints on the state an control variables. The objective is to design a control law which depends on the jump variable, minimizing an average quadratic function. Improving over previous MJLS literature, input and state constraints are enforced. The initial condition of the system and the transition probability of the Markov chain are available to the controller at each instant of time. Concepts arising from the receding horizon framework and invariant set theory are incorporated in a constrained fault-tolerant predictive control approach.
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马尔可夫线性系统的容错预测控制
本文研究了受状态和控制变量约束的离散马尔可夫跳变线性系统的容错控制问题。目标是设计一个依赖于跳跃变量的控制律,最小化平均二次函数。改进了以前的MJLS文献,强制执行了输入和状态约束。系统在每个时刻的初始条件和马尔可夫链的转移概率都是控制器可以得到的。提出了一种约束容错预测控制方法。
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