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Design and motion control of a cable-driven dexterous robotic arm

Guo Zhan Lum, Shabbir Kurbanhusen Mustafa, Hyo-Soon Lim, Wen Bin Lim, Guilin Yang, Song Huat Yeo

Year
2010
Citations
16

Abstract

Robots with hyper degrees of freedom motion are highly flexible, hence they are the ideal candidates to work in highly-confined spaces. These dexterous robotic arms are classified into two categories, i.e., discrete and continuum. As the weight of the discrete robots is a major concern, this paper discusses about the possibility of reducing their weight by replacing the heavy actuators with light cables. The proposed cable-driven robot consists of a series of identical parallel-structured modules connected to one another via universal joints. Experimental results showed that the cables have demonstrated a good step response with no steady-state errors and a fast settling time of 0.042 seconds. By using the kinematics formulations analysed in this paper, position control has been successfully implemented on a two-module cable-driven prototype. This allows the robot to be controlled in a co-ordinated manner while maintaining a smooth trajectory.

Keywords

KinematicsActuatorRobotSettling timeTrajectoryControl theory (sociology)Computer scienceRobotic armMotion (physics)Motion control

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