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Robust Tracking Control of Robot Manipulators Using Only Joint Position Measurements

Ancai Zhang, Jinhua She, Xuzhi Lai, Min Wu, Jianlong Qiu, Xiangyong Chen

Year
2013
Citations
4
Access
Open access

Abstract

This paper concerns the tracking control of a robot manipulator with unknown uncertainties and disturbances. It presents a new control method that uses only joint position measurements to design a tracking controller. The controller has two parts. One is based on a feedback linearization technique; it makes the nominal model of a manipulator asymptotically track a desired trajectory. The other is based on the idea of equivalent input disturbance (EID); it compensates for uncertainties and disturbances. Together they enable a robot manipulator to precisely track the desired trajectory. The new control algorithm is applied to a two-link robot manipulator, and simulation results demonstrate the validity of this method.

Keywords

Control theory (sociology)TrajectoryTracking (education)RobotController (irrigation)Feedback linearizationPosition (finance)Control engineeringLinearizationTrack (disk drive)

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