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首页> 外文期刊>Transactions of the Institute of Measurement and Control >An LMI approach to non-fragile robust optimal guaranteed cost control of uncertain 2-D discrete systems with both state and input delays
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An LMI approach to non-fragile robust optimal guaranteed cost control of uncertain 2-D discrete systems with both state and input delays

机译:具有状态和输入延迟的不确定二维离散系统的非脆弱鲁棒优化保证成本控制的LMI方法

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摘要

In this paper, we present a solution to the problem of non-fragile robust optimal guaranteed cost control for a class of uncertain two-dimensional(2-D) discrete systems described by the general model (GM) subject to both state and input delays. The parameter uncertainties are assumed norm-bounded. A linear matrix inequality (LMI)-based sufficient condition for the existence of non-fragile robust guaranteed cost controller is established. Furthermore, a convex optimization problem with LMI constraints is proposed to select a non-fragile robust optimal guaranteed cost controller stabilizing the uncertain 2-D discrete system with both state and input delays as well as achieving the least guaranteed cost for the resulting closed-loop system. The effectiveness of the proposed method is demonstrated with an illustrative example.
机译:在本文中,我们提出了一种解决方案(GM)描述的一类不确定的二维(2-D)离散系统的非脆弱稳健最佳保证成本控制问题的解决方案 。 假设参数不确定性标准界限。 基于线性矩阵不等式(LMI),为存在非易碎的鲁棒保证成本控制器的存在足够的条件。 此外,提出了一种利用LMI约束的凸优化问题,以选择具有状态和输入延迟的不确定二维离散系统的非易碎稳健最优保证成本控制器,以及实现所得闭环的最小保证成本 系统。 用说明性实例对所提出的方法的有效性进行了说明。

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