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Trajectory following robust adaptive control of flexible joint manipulators

R.A. Al-Ashoor, K. Khorasani, Rajni V. Patel, A.J. Al-Khalili

Year
2002
Citations
7

Abstract

The problem of controlling robot manipulators with flexible joints is considered. A reduced-order flexible joint model based on a singular perturbation formulation of the manipulator equations of motion is used. The concept of an integral manifold is utilized to construct the dynamics of the slow subsystem. A fast subsystem is constructed to represent the dynamics of the elastic forces at the joints. A composite control scheme is developed based on online identification of the manipulator parameters which takes into account the effect of a class of unmodeled dynamics, identification errors and parameter variations. Stability analysis of the resulting closed-loop full-order system is presented. To show the capability of the proposed algorithm, a numerical examples is included for a two-link flexible-joints manipulator. >

Keywords

Singular perturbationControl theory (sociology)TrajectoryComputer sciencePerturbation (astronomy)RobotRobot manipulatorAdaptive controlManipulator (device)Mathematics

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