Abstract
A predefined-time attitude stabilization for complex structure spacecraft with liquid sloshing and flexible vibration is investigated under input saturation during orbital maneuver. First, the attitude dynamics model of liquid-filled flexible spacecraft is constructed. Meanwhile, the influence of solar panel vibration and liquid sloshing is treated as a disturbance in the controller design. Next, an adaptive predefined-time control scheme is proposed by applying sliding mode control theory. A predefined-time convergent sliding surface and reaching law are designed to ensure the predefined-time fast convergence rate. Furthermore, a novel adaptive algorithm is developed to handle the disturbances from liquid sloshing and flexible vibration, ensuring that the system converges to a small neighborhood of the equilibrium. Additionally, a new auxiliary system is constructed to deal with the effects of input saturation. At last, one simulation case is performed to verify the feasibility and advantages of the proposed algorithm.
| Original language | English |
|---|---|
| Pages (from-to) | 2733-2744 |
| Number of pages | 12 |
| Journal | Advances in Space Research |
| Volume | 71 |
| Issue number | 6 |
| DOIs | |
| State | Published - 15 Mar 2023 |
Keywords
- Adaptive control
- Input saturation
- Liquid sloshing and flexible vibration
- Predefined-time control
- Sliding mode control
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