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首页> 外文期刊>Neurocomputing >Dynamic surface error constrained adaptive fuzzy output-feedback control of uncertain nonlinear systems with unmodeled dynamics
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Dynamic surface error constrained adaptive fuzzy output-feedback control of uncertain nonlinear systems with unmodeled dynamics

机译:具有未建模动力学的不确定非线性系统的动态表面误差约束自适应模糊输出-反馈控制

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摘要

In this paper, an adaptive fuzzy output-feedback dynamic surface control (DSC) design with prescribed performance is investigated for a class of uncertain nonlinear systems in strict-feedback form. The considered nonlinear systems contain unknown nonlinear functions, unmodeled dynamics and immeasurable states. The fuzzy logic systems are used to model the unknown nonlinear system, and a fuzzy state observer is designed to estimate the immeasurable states. By transforming the errors into new virtual error variables, and based on DSC backstepping design technique and changing supply function, a new robust adaptive fuzzy output feedback control scheme is developed. It is proved that the proposed control approach can guarantee that all the signals of the resulting closed-loop system are bounded, and the dynamic surface errors are confined within the prescribed bounds for all times. Two simulation examples are provided to show the effectiveness of the proposed control approach.
机译:针对一类具有严格反馈形式的不确定非线性系统,研究了具有规定性能的自适应模糊输出反馈动态表面控制(DSC)设计。所考虑的非线性系统包含未知的非线性函数,未建模的动力学和不可测量的状态。使用模糊逻辑系统对未知的非线性系统进行建模,并使用模糊状态观测器来估计不可估量的状态。通过将误差转换为新的虚拟误差变量,并基于DSC反推设计技术和改变供给函数,开发了一种新的鲁棒自适应模糊输出反馈控制方案。实践证明,所提出的控制方法可以保证所产生的闭环系统的所有信号都具有一定的有界性,并且动态表面误差始终都在规定的范围内。提供了两个仿真示例,以显示所提出的控制方法的有效性。

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