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Finite-Time Adaptive Fuzzy Output Feedback Dynamic Surface Control for MIMO Nonstrict Feedback Systems

机译:MIMO非严格反馈系统的有限时间自适应模糊输出反馈动态表面控制

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This paper investigates the finite-time adaptive fuzzy control problem for a class of multi-input and multi-output (MIMO) nonlinear nonstrict feedback systems. During the control design process, fuzzy logic systems (FLSs) are utilized to approximate the unknown nonlinear functions, and fuzzy state observer is constructed to estimate the unmeasured states. By combining adaptive backstepping with the dynamic surface control (DSC) technique, a finite-time fuzzy adaptive control scheme is presented to overcome the "explosion of complexity" problem. The stability of the close-loop systems can be proved based on the finite-time Lyapunov stability theory. The presented control scheme demonstrates that the closed-loop systems are semiglobal practical finite-time stability, and tracking errors converge to a small neighborhood of the origin in a finite time. Finally, two simulation examples are provided to show the effectiveness of the presented control method.
机译:本文研究了一类多输入多输出(MIMO)非线性非严格反馈系统的有限时间自适应模糊控制问题。在控制设计过程中,利用模糊逻辑系统(FLS)近似未知的非线性函数,并构造模糊状态观察器以估计未测状态。通过将自适应反推与动态表面控制(DSC)技术相结合,提出了一种有限时间模糊自适应控制方案,以解决“复杂性爆炸”的问题。可以基于有限时间Lyapunov稳定性理论证明闭环系统的稳定性。所提出的控制方案表明,该闭环系统具有半全局实用的有限时间稳定性,并且跟踪误差在有限的时间内收敛到原点的较小邻域。最后,提供了两个仿真示例来说明所提出的控制方法的有效性。

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