Homogenous polynomially parameter-dependent H∞ filter designs of discrete-time fuzzy systems.

Huaguang Zhang, Xiangpeng Xie, Shaocheng Tong
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引用次数: 47

Abstract

This paper proposes a novel H(∞) filtering technique for a class of discrete-time fuzzy systems. First, a novel kind of fuzzy H(∞) filter, which is homogenous polynomially parameter dependent on membership functions with an arbitrary degree, is developed to guarantee the asymptotic stability and a prescribed H(∞) performance of the filtering error system. Second, relaxed conditions for H(∞) performance analysis are proposed by using a new fuzzy Lyapunov function and the Finsler lemma with homogenous polynomial matrix Lagrange multipliers. Then, based on a new kind of slack variable technique, relaxed linear matrix inequality-based H(∞) filtering conditions are proposed. Finally, two numerical examples are provided to illustrate the effectiveness of the proposed approach.

离散模糊系统的齐次多项式参数相关H∞滤波器设计。
针对一类离散模糊系统,提出了一种新的H(∞)滤波技术。首先,为了保证滤波误差系统的渐近稳定性和规定的H(∞)性能,提出了一种新的模糊H(∞)滤波器,该滤波器是齐次多项式参数依赖于任意程度的隶属函数。其次,利用新的模糊Lyapunov函数和具有齐次多项式矩阵拉格朗日乘子的Finsler引理,提出了H(∞)性能分析的宽松条件。然后,基于一种新的松弛变量技术,提出了基于松弛线性矩阵不等式的H(∞)滤波条件。最后,给出了两个数值算例来说明所提方法的有效性。
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