Abstract
Purpose - The purpose of this paper is to solve the ground verification and test method for space robot system capturing the target satellite based on visual servoing with time-delay in 3-dimensional space prior to space robot being launched.
Design/methodology/approach - To implement the approaching and capturing task, a motion planning method for visual servoing the space manipulator to capture a moving target is presented. This is mainly used to solve the time-delay problem of the visual servoing control system and the motion uncertainty of the target satellite. To verify and test the feasibility and reliability of the method in three-dimensional (3D) operating space, a set of ground hardware-in-the-loop simulation verification systems is developed, which adopts the end-tip kinematics equivalence and dynamics simulation method.
Findings - The results of the ground hardware-in-the-loop simulation experiment validate the reliability of the eye-in-hand visual system in the 3D operating space and prove the validity of the visual servoing motion planning method with time-delay compensation. At the same time, owing to the dynamics simulator of the space robot added in the ground hardware-in-the-loop verification system, the base disturbance can be considered during the approaching and capturing procedure, which makes the ground verification system realistic and credible.
Originality/value - The ground verification experiment system includes the real controller of space manipulator, the eye-in-hand camera and the dynamics simulator, which can veritably simulate the capturing process based on the visual servoing in space and consider the effect of time delay and the free-floating base disturbance.
| Original language | English |
|---|---|
| Pages (from-to) | 543-556 |
| Number of pages | 14 |
| Journal | Industrial Robot |
| Volume | 41 |
| Issue number | 6 |
| DOIs | |
| State | Published - 14 Oct 2014 |
| Externally published | Yes |
Keywords
- Dynamics simulator
- Ground verification system
- Hardware-in-the-loop simulation
- Space robot system
- Time delay
- Visual servoing control
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