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Adaptive finite-time output-feedback control design for switched pure-feedback nonlinear systems with average dwell time

机译:具有平均停留时间的交换纯反馈非线性系统的自适应有限时间输出反馈控制设计

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In this paper, the issue of adaptive fuzzy tracking control is addressed for a class of completely non-affine uncertain switched pure-feedback nonlinear systems with unmeasurable states. In such a system, the average dwell time switching rule is adopted, and its stability is discussed for the first time in the sense of finite time. A fuzzy logic system-based switched observer is constructed to approximate unmeasurable states, which reduces the conservativeness stemming from utilizing a common observer for all subsystems. In addition, filter signals are applied to avoid algebraic loop problem existing in adoption of the controller. Then, a novel adaptive finite-time control strategy is developed on the basis of multiple Lyapunov functions approach, dynamic surface control and backstepping technique. It is proved that the designed controllers of subsystems can ensure that all the closed-loop signals are bounded under a class of switching signals with average dwell time, while the tracking error can converge to a small area of the origin in a finite time. Finally, two simulation examples are given to demonstrate the validity of the proposed control scheme. (c) 2020 Elsevier Ltd. All rights reserved.
机译:在本文中,针对一类完全非仿射的不确定切换纯反馈非线性系统的解决方案解决了自适应模糊跟踪控制的问题。在这种系统中,采用了平均停留时间切换规则,并且在有限时间的感觉中首次讨论其稳定性。基于模糊的基于逻辑系统的交换观察者构造成近似不受传播状态,这降低了利用所有子系统的共同观察者的保守性。另外,应用滤波器信号以避免采用控制器中存在的代数循环问题。然后,基于多个Lyapunov功能方法,动态表面控制和备用技术开发了一种新的自适应有限时间控制策略。事实证明,设计的子系统控制器可以确保所有闭环信号在具有平均停留时间的一类切换信号下界定,而跟踪误差可以在有限时间内收敛到原点的小区域。最后,给出了两个模拟实施例来证明所提出的控制方案的有效性。 (c)2020 elestvier有限公司保留所有权利。

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