A robust ℋ∞ observer design for unknown input nonlinear systems: Application to fault diagnosis of a wind turbine

M. Witczak, V. Puig, D. Rotondo, Michal de Rozprza-Faygel, M. Mrugalski
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引用次数: 4

Abstract

The paper is devoted to the problem of designing robust unknown input observer (UIO) for fault estimation purpose. The proposed approach is based on the Takagi-Sugeno models which can be effectively applied for modelling of the wide class of non-linear systems. It also revisits the recent results proposed in the literature and provides a less restrictive design procedure of a robust UIO. In particular, the general UIO strategy and the ℋ∞ framework are provided to design a robust fault estimation methodology. The resulting design procedure guarantees that a prescribed disturbance attenuation level is achieved with respect to the state estimation error. The main advantage of the proposed approach boils down to its simplicity because it reduces to solving a set of Linear Matrix Inequalities (LMIs). The final part of the paper presents an illustrative example devoted to the fault estimation of a three blade 1 MW variable-speed, variable-pitch wind turbine.
未知输入非线性系统的稳健h∞观测器设计:在风力发电机组故障诊断中的应用
研究了基于故障估计的鲁棒未知输入观测器的设计问题。该方法基于Takagi-Sugeno模型,可以有效地应用于各种非线性系统的建模。它还回顾了最近在文献中提出的结果,并提供了一个较少限制的鲁棒UIO设计过程。特别地,提供一般的io策略和h∞框架来设计稳健的故障估计方法。由此产生的设计过程保证相对于状态估计误差达到规定的干扰衰减水平。该方法的主要优点在于其简单性,因为它简化为求解一组线性矩阵不等式(lmi)。最后给出了一个典型的三叶片1mw变速变桨距风力发电机组故障估计的实例。
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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