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Nonlinear disturbance observer based sliding mode control of a cable-driven rehabilitation robot

Jie Niu, Qianqian Yang, Guangtao Chen, Rong Song

Year
2017
Citations
20

Abstract

This paper introduces a cable-driven robot for upper-limb rehabilitation. Kinematic and dynamic of this rehabilitation robot is analyzed. A sliding mode controller combined with a nonlinear disturbance observer is proposed to control this robot in the presence of disturbances. Simulation is carried out to prove the effectiveness of the proposed control scheme, and the results of the proposed controller is compared with a PID controller and a traditional sliding mode controller. Results show that the proposed controller can effectively improve the tracking performance as compared with the other two controllers and cause lower chattering as compared with a traditional sliding mode controller.

Keywords

Control theory (sociology)Controller (irrigation)Sliding mode controlKinematicsNonlinear systemPID controllerRobotComputer scienceMode (computer interface)Control engineering

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