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Autonomous target capturing of free-floating space robot: Theory and experiments

  • Wenfu Xu*
  • , Bin Liang
  • , Cheng Li
  • , Yu Liu
  • , Yangsheng Xu
  • *Corresponding author for this work
  • Harbin Institute of Technology
  • Chinese University of Hong Kong

Research output: Contribution to journalArticlepeer-review

Abstract

Space robotic systems are expected to play an increasingly important role in the future. Unlike on the earth, space operations require the ability to work in the unstructured environment. Some autonomous behaviors are necessary to perform complex and difficult tasks in space. This level of autonomy relies not only on vision, force, torque, and tactile sensors, but also the advanced planning and decision capabilities. In this paper, the authors study the autonomous target capturing from the issues of theory and experiments. Firstly, we deduce the kinematic and dynamic equations of space robotic system. Secondly, the visual measurement model of handeye camera is created, and the image processing algorithms to extract the target features are introduced. Thirdly, we propose an autonomous trajectory planning method, directly using the 2D image features. The method predicts the target motion, plans the end-effector's velocities and solves the inverse kinematic equations using practical approach to avoid the dynamic singularities. At last, numeric simulation and experiment results are given. The ground experiment system is set up based on the concept of dynamic simulation and kinematic equivalence. With the system, the experiments of autonomous capturing a target by a free-floating space robot, composed of a 6-DOF manipulator and a satellite as its base, are conducted, and the results validate the proposed algorithm.

Original languageEnglish
Pages (from-to)425-445
Number of pages21
JournalRobotica
Volume27
Issue number3
DOIs
StatePublished - May 2009

Keywords

  • On-orbital service
  • Path planning
  • Space robot
  • Target capturing
  • Visual information

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