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MANIPULATION

Robust Compliant Motion Control of Robot With Nonlinear Friction Using Time-Delay Estimation

Maolin Jin, Sang Hoon Kang, Pyung Hun Chang

Year
2008
Citations
234

Abstract

A simple robust compliant-motion-control technique is presented for a robot manipulator with nonlinear friction. The control technique incorporates both time-delay-estimation technique and ideal velocity feedback; the former is used to cancel out soft nonlinearities, and the latter serves to reduce the effect of hard nonlinearities, including Coulomb friction and stiction. The proposed controller has a simple structure and yet provides good online friction compensation without modeling friction. The robustness of the proposed method has been confirmed through comparisons with other controllers in 2-DOF SCARA-type industrial robot experiments.

Keywords

StictionControl theory (sociology)SCARARobustness (evolution)Nonlinear systemRobotMotion controlRobust controlEngineeringControl engineering

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