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Fault detection observer design for discrete-time 2-D T-S fuzzy systems with finite-frequency specifications

机译:具有有限频率规格的离散时间2-D T-S模糊系统的故障检测观察者设计

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摘要

This work designs a fault detection observer for two-dimensional (2-D) non-linear systems having discrete dynamics expressed in Takagi-Sugeno (T-S) form. The finite frequency (FF) domain is considered during designing the observers, which makes them different from previously proposed 2-D detection observers. Faults and disturbances are considered in two different FF domain intervals, respectively. Fault sensitivity and disturbance robustness are measured by two FF performance indices. The aim here is to formulate an observer that assures the fault sensitivity and disturbance robustness of the residual error system. Essential lemmas have been proposed for nonlinear 2-D Roesser model, which are expected to serve as a bridge between two domains (frequency and time). Conditions have been provided, that are sufficient to design a desired fault detection fuzzy observer and effectivity of the proposed method is shown by simulation results. (C) 2019 Elsevier B.V. All rights reserved.
机译:这项工作设计了用于二维(2-D)非线性系统的故障检测观察者,其具有在Takagi-Sugeno(T-S)形式中表示的离散动态。在设计观察者期间考虑有限频率(FF)域,这使得它们与先前提出的2-D检测观察者不同。故障和干扰分别以两种不同的FF域间隔考虑。故障灵敏度和扰动稳健性由两个FF性能指标测量。这里的目的是制定一个观察者,以确保残余误差系统的故障灵敏度和干扰稳健性。已经提出了非线性2-D roesser模型的必要lemmas,这些模型预计将用作两个域(频率和时间)之间的桥梁。已经提供了条件,足以设计所需的故障检测模糊观察者和所提出的方法的有效性通过仿真结果显示。 (c)2019 Elsevier B.v.保留所有权利。

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