ℋ∞ Sliding Window Observer Design for Lipschitz Discrete-Time Systems

N. Gasmi, M. Boutayeb, A. Thabet, M. Aoun
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Abstract

This paper focuses on the ℋ∞ observer design for Lipschitz discrete-time nonlinear systems. The main idea consists in using previous measurements in a Luenberger observer through a sliding window to obtain less restrictive constraint. Reformulations of both Lipschitz property and Young’s relation are used to offer greater degree of freedom to the obtained constraint. The presented result is in the form of BMI (Bilinear Matrix Inequality) which is transformed into LMI (Linear Matrix Inequality) through an interesting approach. The resulting constraint can be easily achieved with standard software algorithms. Then, to prove the superiority of the proposed design methodology, a comparison with the classical case is presented. Numerical examples are given to illustrate the effectiveness and the high performances of the proposed filter.
Lipschitz离散系统的h∞滑动窗口观测器设计
研究了Lipschitz离散非线性系统的h∞观测器设计。主要思想是通过滑动窗口在Luenberger观测器中使用先前的测量值来获得较少的限制性约束。利普希茨性质和杨氏关系的重新表述为得到的约束提供了更大的自由度。通过一种有趣的方法,将双线性矩阵不等式(BMI)转化为线性矩阵不等式(LMI)。由此产生的约束可以很容易地通过标准软件算法实现。然后,为了证明所提出的设计方法的优越性,与经典案例进行了比较。数值算例说明了该滤波器的有效性和良好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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