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Design and kinematic analysis of the wire parallel mechanism for a robot pose measurement

Jae-Won Jeong, Soohyun Kim, Yoon-Keun Kwak

Year
2002
Citations
10

Abstract

This paper presents a wire parallel mechanism designed and manufactured for a robot pose measurement which can be used for a robot calibration. It consists of six parallel links using wires. The position and orientation of a robot are obtained from the wire lengths measured in the wire parallel mechanism. The complex nonlinear equations of the forward kinematics of a parallel mechanism are solved by using the numerical method (Newton-Raphson method), and the unique solution is determined from a geometric configuration of the designed mechanism. Through the experiments, it is verified that the developed mechanism can measure a full pose of a robot and has an accuracy of /spl plusmn/0.05 mm, /spl plusmn/0.1/spl deg/ in the position and orientation, respectively. In conclusion, it can be used effectively for measuring of a robot pose with low cost and effort.

Keywords

Parallel manipulatorKinematicsMechanism (biology)RobotOrientation (vector space)Position (finance)Robot kinematicsRobot calibrationNonlinear systemCalibration

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