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Adaptive fuzzy dynamic surface control of nonlinear systems with input saturation and time-varying output constraints

机译:具有输入饱和和时变输出约束的非线性系统的自适应模糊动态表面控制

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This paper deals with the design of adaptive fuzzy dynamic surface control for uncertain strict-feedback nonlinear systems with asymmetric time-varying output constraints in the presence of input saturation. To approximate the unknown nonlinear functions and overcome the problem of explosion of complexity, a Fuzzy logic system is combined with the dynamic surface control in the backstepping design technique. To ensure the output constraints satisfaction, an asymmetric time-varying Barrier Lyapunov Function (BLF) is used. Moreover, by applying the minimal learning parameter technique, the number of the online parameters update for each subsystem is reduced to 2. Hence, the semi-globally uniformly ultimately boundedness (SGUUB) of all the closed-loop signals with appropriate tracking error convergence is guaranteed. The effectiveness of the proposed control is demonstrated by two simulation examples.
机译:本文针对存在输入饱和时具有非对称时变输出约束的不确定严格反馈非线性系统的自适应模糊动态表面控制设计。为了逼近未知的非线性函数并克服复杂性激增的问题,在后推设计技术中将模糊逻辑系统与动态曲面控制相结合。为了确保满足输出约束条件,使用了非对称时变势垒李雅普诺夫函数(BLF)。此外,通过应用最小学习参数技术,每个子系统的在线参数更新次数减少为2。因此,具有适当跟踪误差收敛的所有闭环信号的半全局一致最终有界度(SGUUB)为保证。通过两个仿真示例证明了所提出控制的有效性。

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