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Fault detection and isolation for discrete-time descriptor systems based onH(-)/L(infinity)observer and zonotopic residual evaluation

机译:基于ONH( - )/ L(Infinity)观察者和Zonotopic剩余评估的离散时间描述符系统的故障检测与隔离

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摘要

This paper investigates actuator fault detection and isolation for discrete-time linear descriptor systems. We propose a novel fault detection and isolation scheme based on a bank ofH-/L infinity fault detection observers (FDOs). Under the assumption that the disturbances are unknown but bounded,L infinity analysis is used to attenuate the effects of disturbances. Meanwhile, the FDO is designed to be sensitive to the fault via considering theH-performance index in finite frequency domain. The design conditions of the proposed FDO are converted into solving a set of linear matrix inequalities. Furthermore, the residual evaluation based on a set-membership approach is proposed to reduce conservatism. Simulation results are provided to demonstrate the performance of the proposed method.
机译:本文研究了执行器故障检测和离散时间线性描述符系统的隔离。 我们提出了一种基于H-/ L Infinity故障检测观察员(FDOS)的银行的新型故障检测和隔离方案。 在假设扰动未知但有界界面下,L Infinity分析用于衰减干扰的影响。 同时,FDO旨在通过考虑有限频域中的AH性能指数来敏感故障。 所提出的FDO的设计条件转化为求解一组线性矩阵不等式。 此外,提出了基于设定隶属方法的残余评估,以减少保守主义。 提供了仿真结果以证明该方法的性能。

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