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This brief addresses the problem of designing adaptive neural network tracking control for a class of strict-feedback systems with unknown time-varying disturbances of known periods which nonlinearly appear in unknown functions. Multilayer neural network (MNN) and Fourier series expansion (FSE) are combined into a novel approximator to model each uncertainty in systems. Dynamic surface control (DSC) approach and integral-type Lyapunov function (ILF) technique are combined to design the control algorithm. The ultimate uniform boundedness of all closed-loop signals is guaranteed. The tracking error is proved to converge to a small residual set around the origin. Two simulation examples are provided to illustrate the feasibility of control scheme proposed in this brief.
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Weisheng Chen
Fujian Medical University
Licheng Jiao
Institut polytechnique de Grenoble
IEEE Transactions on Neural Networks
Xidian University
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Chen et al. (Wed,) studied this question.
synapsesocial.com/papers/6a20011277451c29e065a8c6 — DOI: https://doi.org/10.1109/tnn.2009.2038999