Development of a stereo vision measurement system for a 3D three-axial pneumatic parallel mechanism robot arm

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Abstract

In this paper, a stereo vision 3D position measurement system for a three-axial pneumatic parallel mechanism robot arm is presented. The stereo vision 3D position measurement system aims to measure the 3D trajectories of the end-effector of the robot arm. To track the end-effector of the robot arm, the circle detection algorithm is used to detect the desired target and the SAD algorithm is used to track the moving target and to search the corresponding target location along the conjugate epipolar line in the stereo pair. After camera calibration, both intrinsic and extrinsic parameters of the stereo rig can be obtained, so images can be rectified according to the camera parameters. Thus, through the epipolar rectification, the stereo matching process is reduced to a horizontal search along the conjugate epipolar line. Finally, 3D trajectories of the end-effector are computed by stereo triangulation. The experimental results show that the stereo vision 3D position measurement system proposed in this paper can successfully track and measure the fifth-order polynomial trajectory and sinusoidal trajectory of the end-effector of the three- axial pneumatic parallel mechanism robot arm. © 2011 by the authors; licensee MDPI, Basel, Switzerland.

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Chiang, M. H., Lin, H. T., & Hou, C. L. (2011). Development of a stereo vision measurement system for a 3D three-axial pneumatic parallel mechanism robot arm. Sensors, 11(2), 2257–2281. https://doi.org/10.3390/s110202257

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