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首页> 外文期刊>International Journal of Automation and Control >Adaptive wavelet network controller design for nonlinear time delay systems in the presence of actuator failure
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Adaptive wavelet network controller design for nonlinear time delay systems in the presence of actuator failure

机译:致动器故障存在下非线性时间延迟系统的自适应小波网络控制器设计

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摘要

This paper presents an adaptive wavelet network controller for a class of strict-feedback uncertain nonlinear systems with unknown time delays and in the presence of external disturbances and actuator failure. The type of considered actuator failure is loss of effectiveness, in which the system input may lose unknown fraction of its effectiveness during the system operation. Wavelet networks are utilised to approximate unknown nonlinear functions and the proposed adaptive-neural controller is constructed based on dynamic surface control (DSC) design method. By applying the appropriate Lyapunov-Krasovskii functionals, the boundedness of all the closed-loop signals is guaranteed and the tracking error is proved to converge to a small neighbourhood of the origin. The performance of the proposed adaptive-neural control approach is illustrated by applying a theoretical system and a chemical reactor system. The simulation results indicate the effective capabilities of the proposed control algorithm.
机译:本文介绍了一类严格反馈不确定非线性系统的自适应小波网络控制器,具有未知的时间延迟和外部干扰和执行器故障。所考虑的执行器故障的类型是损失有效性,其中系统输入可能在系统操作期间损失其有效性的未知部分。小波网络用于近似未知的非线性功能,并且基于动态表面控制(DSC)设计方法构建所提出的自适应神经控制器。通过应用适当的Lyapunov-krasovskii功能,保证所有闭环信号的界限,并证明跟踪误差会收敛到原点的小邻居。通过应用理论系统和化学反应器系统来说明所提出的自适应神经控制方法的性能。仿真结果表明所提出的控制算法的有效能力。

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