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Robust fast adaptive fault estimation and tolerant control for T-S fuzzy systems with interval time-varying delay

机译:区间时变时滞T-S模糊系统的鲁棒快速自适应故障估计和容错控制

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This paper studies the problem of fault estimation (FE) and the active fault tolerant control (FTC) for Takagi-Sugeno (T-S) fuzzy systems with interval time-varying delay and norm-bounded external disturbance. Based on the fast adaptive fault estimation (FAFE) algorithm, our attention focuses on designing an adaptive observer-based controller to guarantee the filtering error system to be asymptotically stable and satisfy the H-infinity performance index. By constructing a new Lyapunov-Krasovskii functional including the information of the lower and upper delay bounds, the sufficient delay-dependent conditions have been established to guarantee the existence of adaptive observer-based controller in terms of linear matrix inequalities (LMIs). Compared with the constant delay and time-varying delay, the interval time-varying delay is the less conservative form. Furthermore, we make full use of the information of the delay and no terms are ignored when the stability of the system is analysed. In addition, the results for the systems with time-varying structured uncertainties are established. The results of the active FTC are showed in terms of LMIs. Finally, two examples are given to verify the effectiveness of the proposed method.
机译:研究了具有时变间隔时滞和范数有界外部干扰的高木-杉野(T-S)模糊系统的故障估计(FE)和主动容错控制(FTC)问题。基于快速自适应故障估计(FAFE)算法,我们的注意力集中在设计基于自适应观测器的控制器上,以确保滤波误差系统渐近稳定并满足H无限性能指标。通过构造一个新的Lyapunov-Krasovskii函数,包括上下延迟边界的信息,已经建立了足够的依赖于延迟的条件,以保证存在基于线性矩阵不等式(LMI)的基于自适应观察者的控制器。与恒定时延和时变时延相比,区间时变时延是较不保守的形式。此外,我们充分利用了时延信息,在分析系统稳定性时不会忽略任何项。此外,建立了具有时变结构不确定性的系统的结果。主动FTC的结果以LMI表示。最后,通过两个例子验证了所提方法的有效性。

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