Design and implementation of Visual Epigynous Machine on Robotic Sorting

Author:

Zeng Lingchao,Cao Yuhua,Xiao Chenjun,Zhong Xiaohua,Wei Shangming,Zeng Guanlin

Abstract

Abstract Robotic assembly is an important process to replace manual picking in industrial smart manufacturing. One of the important steps in assembly is robotics grasping and sorting of the workpiece. In this paper, a lightweight visual epigynous system was designed to address sorting workpieces with high efficiency, portability, and accuracy. The software of the system was divided into a vision calculation module (VCM), an ethernet communication module, a system control module, and a real-time display module. VCM is responsible for obtaining the information of workpieces, which includes segmenting the images captured by the webcam sequentially and recognizing the digit, and calculating the angle by algorithms of AKAZE feathers matching with and orientation estimation for vector comparison. The proposed method in VCM performs best in estimating the orientation of the workpiece through the comparison of different template matching algorithms. The industrial field experiments indicated that the robot could satisfy the requirement of visual sorting. This system provides a practical and robust solution for industrial workpiece sorting applications.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference11 articles.

1. Automated bin picking system for randomly located industrial parts;Carlos,2015

2. Model-based robot vision self supervised learning in CART;Asif;Alexandria Engineering Journal.,2022

3. Robot learning towards smart robotic manufacturing: A review;Zhihao;Robotics and Computer-Integrated Manufacturing,2022

4. RoboSim: a simulation environment for programming virtual robots;Gucwa Kevin;Engineering with Computers.,2018

5. An IoT approach for efficient overtake detection of vehicles using H264/AVC video data;Rodriguez-Benitez;Internet of Things,2020

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