New Design of Robust Energy-to-Peak Filtering for Uncertain Continuous-time Systems

Xiangyu Meng, Huijun Gao
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引用次数: 2

Abstract

This paper presents a new parameter-dependent approach to the design of robust energy-to-peak filters for linear uncertain systems. Given a system containing polytopic parameter uncertainties, our purpose is to design a robust filter such that the filtering error system is asymptotically stable with a guaranteed L2-Linfin disturbance attenuation level gamma. This problem is solved by introducing new energy-to-peak performance characterizations, and by utilizing an idea of structured parameter-dependent matrices. New sufficient conditions are obtained for the existence of desired filters in terms of linear matrix inequalities (LMIs), which can be easily tested by using standard numerical software. If these conditions are satisfied, a desired filter can be readily constructed. Continuous-time systems are considered, and the effectiveness and advantage of the proposed filter design methods are shown via a numerical example.
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不确定连续系统鲁棒能量至峰值滤波的新设计
针对线性不确定系统,提出了一种新的基于参数的鲁棒能量峰滤波器设计方法。给定一个包含多面体参数不确定性的系统,我们的目的是设计一个鲁棒滤波器,使滤波误差系统渐近稳定,并保证L2-Linfin干扰衰减水平。通过引入新的能量到峰值性能表征,并利用结构化参数相关矩阵的思想,解决了这个问题。用线性矩阵不等式(lmi)的形式给出了期望滤波器存在的新的充分条件,并可以用标准数值软件进行验证。如果满足这些条件,则可以很容易地构造所需的滤波器。以连续时间系统为例,通过数值算例说明了所提滤波器设计方法的有效性和优越性。
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