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Research Article | Open Access

A Method of Human-Like Compliant Assembly Based on Variable Admittance Control for Space Maintenance

Xiaolei Cao1Xiao Huang1( )Yan Zhao1Zeyuan Sun2Hui Li1 ( )Zhihong Jiang1Marco Ceccarelli3
School of Mechatronical Engineering, Advanced Innovation Center for Intelligent Robots and Systems, Key Laboratory of Biomimetic Robots and Systems of Chinese Ministry of Education, Beijing Institute of Technology, Beijing 100081, China
China Northern Vehicle Research Institute, Beijing 100071, China
Department of Industrial Engineering, University of Rome Tor Vergata, Via del Politecnico 1, 00133 Roma, Italy
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Abstract

On-orbit assembly has become a crucial aspect of space operations, where the manipulator frequently and directly interacts with objects in a complex assembly process. The traditional manipulator control has limitations in adapting to diverse assembly tasks and is vulnerable to vibration, leading to assembly failure. To address this issue, we propose a human-like variable admittance control method based on the variable damping characteristics of the human arm. By collecting the velocity and contact force of human arm operations in assembly, we analyze the damping change of human arm and establish the active compliance model based on S-type damping variation rule in assembly. Furthermore, 3 passive contact models are proposed between the end of the human arm and the environment: one-sided bevel contact, both sides bevel contact, and pin–hole contact. On the basis of these active and passive models, a typical space assembly task for a robot is designed, and a human-like variable admittance controller is established and simulated. Finally, we build a ground verification platform and complete different assembly tasks, thereby successfully verifying the safety, robustness, and adaptability of the human-like variable admittance control method.

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Cyborg and Bionic Systems
Article number: 0046

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Cite this article:
Cao X, Huang X, Zhao Y, et al. A Method of Human-Like Compliant Assembly Based on Variable Admittance Control for Space Maintenance. Cyborg and Bionic Systems, 2023, 4: 0046. https://doi.org/10.34133/cbsystems.0046

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Received: 12 January 2023
Accepted: 06 July 2023
Published: 06 September 2023
© 2023 Xiaolei Cao et al. Exclusive licensee Beijing Institute of Technology Press. No claim to original U.S. Government Works.

Distributed under a Creative Commons Attribution License 4.0 (CC BY 4.0).