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A 2D-based approach to guaranteed cost repetitive control for uncertain discrete-time systems

机译:基于二维的不确定离散时间系统的成本保证重复控制方法

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摘要

This paper presents a two-dimensional (2D)-based approach to the problem of guaranteed cost repetitive control for uncertain discrete-time systems. The objective is to design a control law such that the closed loop repetitive control system is robustly stable and a certain bound of performance criteria is guaranteed for all admissible uncertainties. It is shown first how the proposed repetitive control scheme can be equivalently formulated in the form of a distinct class of 2D system. Then, sufficient conditions for the existence of guaranteed cost control law are derived in terms of linear matrix inequality (LMI), and the control law matrices are characterized by the feasible solutions to this LMI. Moreover, an optimization problem is introduced to efficiently solve the optimal guaranteed cost control law by minimizing the upper bound of the cost function. The proposed approach is applicable not only to SISO systems, but also to MIMO systems. Two numerical examples are provided to demonstrate the effectiveness of the proposed controller design procedures.
机译:本文提出了一种基于二维(2D)的方法来解决不确定离散时间系统的保证成本重复控制问题。目的是设计一种控制律,以使闭环重复控制系统具有鲁棒的稳定性,并为所有容许的不确定性保证一定的性能标准。首先示出了如何以独特的2D系统类的形式等效地提出所提出的重复控制方案。然后,根据线性矩阵不等式(LMI)推导了存在保证成本控制律的充分条件,并通过对该LMI的可行解来表征控制律矩阵。此外,引入优化问题以通过最小化成本函数的上限来有效地解决最优保证成本控制律。所提出的方法不仅适用于SISO系统,而且适用于MIMO系统。提供了两个数值示例来证明所提出的控制器设计程序的有效性。

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