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Calibration for a Planar Cable-Driven Parallel Robot

Xuejun Jin, Jin‐Woo Jung, Jong Pyo Jun, Sukho Park, Jong‐Oh Park, Seong Young Ko

Year
2015
Citations
3
Access
Open access

Abstract

This paper proposes a calibration algorithm for a three-degree-of-freedom (DOF) planar cable-driven parallel robot (CDPR). To evaluate the proposed algorithm, we calibrated winches and an optical tracking sensor, measured the end-effector pose using the optical tracking sensor, and calculated the accurate robot configuration using the measurement information. To conduct an accuracy test on the end-effector pose, we followed guidelines from "Manipulating industrial robots - Performance criteria and related test methods." Through the test, it is verified that the position accuracy can be improved by up to 20% for a <TEX>$2m{\times}2m$</TEX>-sized planar cable robot using the proposed calibration algorithm.

Keywords

PlanarParallel manipulatorCalibrationRobotRobot end effectorTracking (education)Computer scienceRobot calibrationPosition (finance)Computer vision

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