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Robust H filter design for singular systems with time-varying uncertainties

机译:具有时变不确定性的奇异系统的鲁棒H 滤波器设计

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This article deals with the design of robust H<;sub>;∞<;/sub>; filter for singular systems in general form, subject to bounded time-varying uncertainties. The aim is to design linear admissible descriptor filters that ensure a guaranteed bound on the ℒ<;sub>;2<;/sub>; gain of the operator from the noise signals to the estimation error signal, irrespective of the time-varying uncertain parameters. A strict linear matrix inequality based method is proposed to the robust H<;sub>;∞<;/sub>; filter design employing affine Lyapunov functions. A numerical example is presented to show the efficiency of the proposed method.
机译:本文讨论了鲁棒H <; sub>;∞<; / sub>;的设计。一般形式的奇异系统的滤波器,有一定的时变不确定性。目的是设计线性可允许描述符滤波器,以确保&Lscr; <; sub>; 2 <; / sub>;上的保证范围。不管时变的不确定参数如何,操作员从噪声信号到估计误差信号的增益。针对鲁棒H <; sub>;∞<; / sub>;提出了一种基于严格线性矩阵不等式的方法。采用仿射Lyapunov函数的滤波器设计。数值例子表明了该方法的有效性。

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