A Robust Robot Design for Item Picking
Albert Causo, Zheng-Hao Chong, Ramamoorthy Luxman, Yuan Yik Kok, Zhao Yi, Wee-Ching Pang, Ren Meixuan, Yee Seng Teoh
Abstract
In order to build a stable and reliable system for the Amazon Robotics Challenge we went through a detailed study of the performance and system requirements based on the rules and our past experience of the challenge. The challenge was to build a robot that integrates grasping, vision, motion planning, among others, to be able to pick items from a shelf to specific order boxes. This paper presents the development process including component selection, module designs, and deployment. The resulting robot system has dual 6 degrees of freedom industrial arms mounted on fixed bases, which in turn are mounted on a calibrated table. The robot works with a custom-designed top-open extendable shelf. The vision system uses multiple stereo cameras mounted on a fixed calibrated frame. Feature-based comparison and machine-learning based matching are used to identify and determine item pose. The gripper system uses suction cup and the grasping strategy is pick from the top. Error recovery strategies were also implemented to ensure robust performance. During the competition, the robot was able to pick all target items with the shortest amount of time.
BibTeX
@inproceedings{icra2018_arobustrobotdesi,
title = {A Robust Robot Design for Item Picking},
author = {Albert Causo and Zheng-Hao Chong and Ramamoorthy Luxman and Yuan Yik Kok and Zhao Yi and Wee-Ching Pang and Ren Meixuan and Yee Seng Teoh and Wu Jing and Hendra Suratno Tju and I.-Ming Chen},
booktitle = {ICRA 2018},
year = {2018}
}