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Fault Estimation Observer Design for Discrete-Time Takagi–Sugeno Fuzzy Systems Based on Piecewise Lyapunov Functions

机译:基于分段Lyapunov函数的离散Takagi-Sugeno模糊系统的故障估计观测器设计

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This paper studies the problem of robust fault estimation (FE) observer design for discrete-time Takagi–Sugeno (T–S) fuzzy systems via piecewise Lyapunov functions. Both the full-order FE observer (FFEO) and the reduced-order FE observer (RFEO) are presented. The objective of this paper is to establish a novel framework of the FE observer with less conservatism. First, under the multiconstrained design, an FFEO is proposed to achieve FE for discrete-time T–S fuzzy models. Then, using a specific coordinate transformation, an RFEO is constructed, which results in a new fault estimator to realize FE using current output information. Furthermore, by the piecewise Lyapunov function approach, less conservative results on both FFEO and RFEO are derived by introducing slack variables. Simulation results are presented to illustrate the advantages of the theoretic results that are obtained in this paper.
机译:本文通过分段Lyapunov函数研究了离散时间Takagi-Sugeno(TS)模糊系统的鲁棒故障估计(FE)观测器设计问题。同时介绍了全阶FE观察者(FFEO)和降阶FE观察者(RFEO)。本文的目的是建立一个保守性较低的有限元观察者的新框架。首先,在多约束设计下,提出了一种FFEO来实现离散时间TS模糊模型的有限元。然后,使用特定的坐标变换,构造一个RFEO,这将导致一个新的故障估计器,以利用当前的输出信息来实现FE。此外,通过分段Lyapunov函数方法,通过引入松弛变量,可以得出FFEO和RFEO的保守程度较低的结果。仿真结果表明了本文所获得的理论结果的优势。

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