Robust fault detection dynamic observer design for LTI systems

Xiukun Wei, L. Lihua, Guo-qiang Cai, Yong Qin, L. Jia
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引用次数: 6

Abstract

Dynamic observer provides more freedom to meet the diversified performance specifications for fault detection purpose in contrast with static observer. However, little attention is paid on its design and only a few papers investigated how to design a fault detection dynamic observer. In this work, we propose an innovative dynamic observer design approach for linear time invariant (LTI) systems subjected to unknown disturbance and possible faults with the aid of the generalized KYP lemma developed recently. The dynamic observer is designed such that the disturbances are attenuated to a specified level to meet the H∞ performance in the concerned finite frequency interval while the sensitivity to the possible faults in its frequency domain is maximized in the H- index sense. The existence conditions of such an observer are given in terms of linear matrix inequalities (LMIs). An iterative algorithm is presented to achieve the solution. The effectiveness of the proposed method is illustrated by a numerical example.
LTI系统鲁棒故障检测动态观测器设计
与静态观测器相比,动态观测器为故障检测提供了更大的自由度,以满足多种性能要求。然而,对其设计的关注很少,研究如何设计故障检测动态观测器的论文也很少。在这项工作中,我们提出了一种创新的动态观测器设计方法,用于受未知干扰和可能故障的线性时不变(LTI)系统,借助最近发展的广义KYP引理。动态观测器在有限频率区间内将扰动衰减到一定程度以满足H∞性能,同时在H指数意义上使其对频域内可能出现的故障的灵敏度最大化。用线性矩阵不等式的形式给出了这种观测器的存在条件。提出了一种迭代算法来求解。算例说明了该方法的有效性。
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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