Peg-in-hole assembly based on master-slave coordination for a compliant dual-arm robot
ISSN: 0144-5154
Article publication date: 20 January 2020
Issue publication date: 30 March 2020
Abstract
Purpose
The paper aims to propose an assembly scheme based on master–slave coordination for a compliant dual-arm robot to complete a peg-in-hole assembly task.
Design/methodology/approach
The proposed assembly scheme is inspired by the coordinated behaviors of human beings in the assembly process. The left arm and right arm of the robot are controlled to move alternately. The fixed arm and the moving arm are distinguished as the slave arm and the master arm, respectively. The position control model is used at the uncontacted stage, and the torque control model is used at the contacted stage.
Findings
The proposed assembly scheme is evaluated through peg-in-hole assembly experiments with different shapes of assembly piece. The round, triangle and square assembly piece with 0.5 mm maximum clearance between the peg and the hole can be assembled successfully based on the proposed method. Furthermore, three assembly strategies are investigated and compared in the peg-in-hole assembly experiments with different shapes of assembly piece.
Originality/value
The contribution of this study is that the authors propose an assembly scheme for a compliant dual-arm robot to overcome the low positioning accuracy and complete the peg-in-hole assembly tasks with different shapes parts.
Keywords
Acknowledgements
This work is supported by National Natural Science Foundation of China (No. 91748111, U1501247), and partly supported by Fundamental Research Funds for the Central Universities (No. 2018ZD27), and partly supported by Guangdong Marine Economy Promotion Projects Fund (No. GDOE(2019)A40)
Citation
Huang, Y., Zheng, Y., Wang, N., Ota, J. and Zhang, X. (2020), "Peg-in-hole assembly based on master-slave coordination for a compliant dual-arm robot", Assembly Automation, Vol. 40 No. 2, pp. 189-198. https://doi.org/10.1108/AA-10-2018-0164
Publisher
:Emerald Publishing Limited
Copyright © 2020, Emerald Publishing Limited