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MANIPULATION

Design and simulation of robust composite controllers for flexible joint robots

Hamid D. Taghirad, Mohammad A. Khosravi

Year
2004
Citations
14

Abstract

In this paper the control of flexible joint manipulators is studied in detail. A composite control algorithm is proposed for the flexible joint robots, which consists of two main parts. Fast control, u/sub f/, which guarantees that the fast dynamics remains asymptotically stable, and the corresponding integral manifold remains invariant. Slow control, u/sub s/, itself consists of a robust PID designed based on the rigid model, and a corrective term designed based on the reduced flexible model. The stability of the overall closed loop system is proved to be UUB stable, by Lyapunov stability analysis. Finally, the effectiveness of the proposed control law is verified through simulations. It is shown that the proposed control law ensure the robust stability and performance, despite the modeling uncertainties.

Keywords

Control theory (sociology)PID controllerRobotStability (learning theory)Robust controlComputer scienceStability theoryRobustness (evolution)Lyapunov functionExponential stability

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