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A Filtered Repetitive Controller for a Class of Nonlinear Systems

Quan Quan, Kai‐Yuan Cai

Year
2010
Citations
22

Abstract

In this note, a filtered repetitive controller (FRC) is designed to compensate for periodic disturbances in a class of nonlinear systems. First, a new model of periodic disturbances is proposed. By this model, the FRC is designed and the resulting closed-loop error dynamics are analyzed with the help of a Lyapunov-Krasovskii functional. Finally the method is applied to periodic disturbance rejection in a class of robotic manipulators. Compared with repetitive controllers, the FRC provides the flexibility to choose filter parameters to achieve a tradeoff between tracking performance and stability. More importantly, FRC can deal with small input delay while the corresponding RC cannot.

Keywords

Control theory (sociology)Nonlinear systemFlexibility (engineering)Controller (irrigation)Repetitive controlStability (learning theory)Computer scienceFilter (signal processing)Class (philosophy)Lyapunov function

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