Adaptive hierarchical control for a class of MIMO uncertain underactuated systems

A. Kulkarni, A. Kumar
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引用次数: 1

Abstract

This paper presents an adaptive control strategy which combines the hierarchical control scheme with adaptive wavelet neural network for a class of multi-input multi-output (MIMO) underactuated systems with uncertain dynamics. Proposed scheme develops a systematic framework of the control components by applying hierarchical scheme to underactuated system. Wavelet neural networks are used to mimic the system uncertainties. Adaptive parameters of the wavelet network are tuned on line using gradient based approach. Uniformly ultimately bounded (UUB) stability of the closed loop system is analyzed in the sense of Lyapunov theory. Simulation results demonstrate the performance of proposed control scheme.
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一类MIMO不确定欠驱动系统的自适应层次控制
针对一类动态不确定的多输入多输出欠驱动系统,提出了一种将层次控制与自适应小波神经网络相结合的自适应控制策略。该方案将层次结构应用于欠驱动系统,建立了控制元件的系统框架。采用小波神经网络模拟系统的不确定性。采用基于梯度的方法在线调整小波网络的自适应参数。从李雅普诺夫理论的意义上分析了闭环系统的一致最终有界稳定性。仿真结果验证了所提控制方案的有效性。
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