Abstract
Purpose
The aim of this study is to create a robust and simple collision avoidance approach based on quaternion algebra for vision-based pick and place applications in manufacturing industries, specifically for use with industrial robots and collaborative robots (cobots).
Design/methodology/approach
In this study, an approach based on quaternion algebra is developed to prevent any collision or breakdown during the movements of industrial robots or cobots in vision system included pick and place applications. The algorithm, integrated into the control system, checks for collisions before the robot moves its end effector to the target position during the process flow. In addition, a hand–eye calibration method is presented to easily calibrate the camera and define the geometric relationships between the camera and the robot coordinate systems.
Findings
This approach, specifically designed for vision-based robot/cobot applications, can be used by developers and robot integrator companies to significantly reduce application costs and the project timeline of the pick and place robotics system installation. Furthermore, the approach ensures a safe, robust and highly efficient application for robotics vision applications across all industries, making it an ideal solution for various industries.
Originality/value
The algorithm for this approach, which can be operated in a robot controller or a programmable logic controller, has been tested as real-time in vision-based robotics applications. It can be applied to both existing and new vision-based pick and place projects with industrial robots or collaborative robots with minimal effort, making it a cost-effective and efficient solution for various industries.
Subject
Industrial and Manufacturing Engineering,Computer Science Applications,Control and Systems Engineering
Reference24 articles.
1. Kinematic identification of industrial robot using end-effector mounted monocular camera bypassing measurement of 3D pose;IEEE/ASME Transactions on Mechatronics,2021
2. Low-cost vision system for pick and place application using camera and ABB industrial robot,2020
3. A kinematic notation for lower-pair mechanisms based on matrices;Journal of Applied Mechanics,1955
4. A solution to the hand-eye calibration in the manner of the absolute orientation problem;Industrial Robot: An International Journal,2018
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