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Adaptive finite-time control for a class of uncertain high-order non-linear systems based on fuzzy approximation

机译:基于模糊逼近的一类不确定高阶非线性系统的自适应有限时间控制

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The problem of adaptive practical finite-time control is considered for a class of single-input and single-output non-linear systems, in which the system non-linear functions are assumed to be unknown. By combining adaptive fuzzy control approach with the backstepping technology, a backstepping-based adaptive fuzzy finite-time control scheme is proposed. In the control design procedure, fuzzy logic systems are employed to identify the non-linear uncertainties. The stability analysis of the adaptive closed-loop systems is proposed based on the finite-time Lyapunov stability theory. The proposed adaptive fuzzy controller guarantees that all the closed signals are semi-global practical finite-time stability while the tracking error converges to a small neighbourhood of the origin. Finally, simulation results are presented to validate the effectiveness of our results.
机译:对于一类单输入单输出非线性系统,考虑了系统的非线性函数为未知的情况,考虑了自适应实际有限时间控制的问题。通过将自适应模糊控制方法与反推技术相结合,提出了一种基于反推的自适应模糊有限时间控制方案。在控制设计过程中,采用模糊逻辑系统来识别非线性不确定性。基于有限时间Lyapunov稳定性理论,提出了自适应闭环系统的稳定性分析。所提出的自适应模糊控制器确保所有闭合信号都是半全局实用的有限时间稳定性,同时跟踪误差收敛到原点的较小邻域。最后,给出仿真结果以验证我们的结果的有效性。

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