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MANIPULATION

Position-Based Visual Servoing of Multiple Robotic Manipulators: Verification in Gazebo Simulator

Samyeul Noh, Chanwon Park, Junhee Park

Year
2020
Citations
5

Abstract

Today, a paradigm in the manufacturing industry has been shifted from mass production to small and custom production. To adapt to today's industrial expectations, this paper presents position-based visual servoing of multiple robotic manipulators. The presented visual servoing consists of two modules: task planning and motion planning. The task planning module manipulates each robotic arm not to collide with each other by distributing a task to them in a systematic manner. The motion planning module employs the MoveIt framework to solve inverse kinematics for each robotic arm so that it moves each end-effector's pose to the desired pose to complete the task. In addition, the module controls a robotic hand to grasp or release a target object. The presented visual servoing has been tested and verified in the Gazebo simulator.

Keywords

Visual servoingGRASPTask (project management)Computer scienceKinematicsInverse kinematicsRobot end effectorComputer visionArtificial intelligenceRobotic arm

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