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Pose Estimation of a Cobot Implemented on a Small AI-Powered Computing System and a Stereo Camera for Precision
Marco-Antonio Cabrera-Rufino1, Juan-Manuel Ramos-Arreguín1, Marco-Antonio Aceves-Fernandez1
1Facultad de Ingeniería, Universidad Autónoma de Querétaro, Cerro de las Campanas, Las Campanas, Queretaro 76010, Mexico.
This study introduces a novel visual measurement system using stereo cameras and a convolutional neural network to enhance robotic arm precision. The intelligent system compensates for geometric errors, improving accuracy for industrial and medical robots.
Area of Science:
- Robotics
- Computer Vision
- Machine Learning
Background:
- Robotic manipulators require high precision for industrial and medical applications, particularly in repetitive tasks.
- Geometric deformations commonly affect robotic manipulator accuracy.
- Existing 3D vision techniques help determine geometric distances but can be improved.
Purpose of the Study:
- To measure the angular position of a six-degrees-of-freedom robotic arm.
- To enhance the precision of robotic manipulators by compensating for geometric errors.
- To develop an intelligent visual measurement system as a complementary tool to encoders.
Main Methods:
- Utilized a stereo camera system for visual data acquisition.
- Implemented a convolutional neural network (CNN) algorithm for error compensation.
- Focused on reducing precision degradation caused by geometric inaccuracies.
Main Results:
- Achieved an accuracy of approximately one millimeter in camera testing.
- The proposed method demonstrated superior performance compared to traditional and basic neural network approaches.
- The intelligent visual system effectively compensated for geometric errors, enhancing overall accuracy.
Conclusions:
- The developed visual measurement system significantly improves robotic arm angular position accuracy.
- This intelligent system offers a viable method to enhance precision in robotic applications without replacing existing encoders.
- The integration of stereo cameras and CNNs presents a promising advancement in robotic vision for industrial and medical fields.
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