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首页> 外文期刊>IEEE Transactions on Fuzzy Systems >Fault Detection Filtering Design for Discrete-Time Interval Type-2 T–S Fuzzy Systems in Finite Frequency Domain
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Fault Detection Filtering Design for Discrete-Time Interval Type-2 T–S Fuzzy Systems in Finite Frequency Domain

机译:有限频域离散时间间隔类型-2 T-S模糊系统的故障检测滤波设计

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摘要

This article focuses on the problem of fault detection filtering design for discrete-time interval type-2 Takagi-Sugeno (T-S) fuzzy systems in finite frequency domain. Considering the fact that external disturbances and faults are usually reside in finite frequency ranges, the finite frequency H-infinity and H- performances are introduced to reflect the disturbance robustness and fault sensitiveness in finite frequency domain, respectively. Based on discrete-time Fourier transform and its properties, finite frequency performance analysis results are first obtained. Then, by exploiting the information on upper and lower membership functions, the membership-function-dependent filtering design conditions in the form of linear matrix inequalities are established for discrete-time interval type-2 T-S fuzzy systems in finite frequency domain. With the obtained filter, a fault detection scheme is then proposed and it is shown that the resulting fault detection system is asymptotically stable with prescribed finite frequencyH(infinity) and H- performances. Finally, the effectiveness of the proposed method is validated by simulation studies.
机译:本文侧重于有限频域中离散时间间隔类型-2 Takagi-Suggeno(T-S)模糊系统的故障检测滤波设计问题。考虑到外部干扰和故障通常驻留在有限频率范围内,引入有限频率的H-Infinity和H-性能,以反映有限频域中的扰动稳健性和故障敏感性。基于离散时间傅里叶变换及其性质,首先获得有限频率性能分析结果。然后,通过利用关于上下隶属函数的信息,在有限频域中的离散时间间隔类型-2 T-S模糊系统建立了线性矩阵不等式形式的成员函数依赖的滤波设计条件。利用所获得的滤波器,然后提出了故障检测方案,并表明所得到的故障检测系统具有规定的有限频率(Infinity)和H-性能渐近稳定。最后,通过模拟研究验证了所提出的方法的有效性。

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