An iterative learning control design method for nonlinear discrete-time systems with unknown iteration-varying parameters and control direction (Q1793722)

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scientific article; zbMATH DE number 6953717
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An iterative learning control design method for nonlinear discrete-time systems with unknown iteration-varying parameters and control direction
scientific article; zbMATH DE number 6953717

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    An iterative learning control design method for nonlinear discrete-time systems with unknown iteration-varying parameters and control direction (English)
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    12 October 2018
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    Summary: An iterative learning control (ILC) scheme is designed for a class of nonlinear discrete-time dynamical systems with unknown iteration-varying parameters and control direction. The iteration-varying parameters are described by a high-order internal model (HOIM) such that the unknown parameters in the current iteration are a linear combination of the counterparts in the previous certain iterations. Under the framework of ILC, the learning convergence condition is derived through rigorous analysis. It is shown that the adaptive ILC law can achieve perfect tracking of system state in presence of iteration-varying parameters and unknown control direction. The effectiveness of the proposed control scheme is verified by simulations.
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