Author:
Chujo Toshihiro,Watanabe Kei,Takao Yuki
Abstract
AbstractA new attitude control method for solar sails is proposed using a single-axis gimbal mechanism and three-axis reaction wheels. The gimbal angle is varied to change the geometrical relationship between the force due to solar radiation pressure (SRP) and the center of mass of the spacecraft, such that the disturbance torque is minimized during attitude maintenance for orbit control. Attitude maneuver and maintenance are performed by the reaction wheels based on the quaternion feedback control method. Even if angular momentum accumulates on the reaction wheels due to modelling error, it can also be unloaded by using the gimbal to produce suitable torque due to SRP. In this study, we analyzed the attitude motion under the reaction wheel control by linearizing the equations of motion around the equilibrium point. Further, we newly derived the propellent-free unloading method based on the analytical formulation. Finally, we constructed the integrated attitude{orbit control method, and its validity was verified in integrated attitude{orbit control simulations.
Publisher
Springer Science and Business Media LLC
Reference24 articles.
1. Polites, M., Kalmanson, J., Mangus, D. Solar sail attitude control using small reaction wheels and magnetic torquers. Proceedings of the Institution of Mechanical Engineers, Part G: Journal of Aerospace Engineering, 2008, 222(1): 53–62.
2. Firuzi, S., Gong, S. P. Attitude control of a exible solar sail in low Earth orbit. Journal of Guidance, Control, and Dynamics, 2018, 41(8): 1715–1730.
3. Oguri, K., Funase, R. Time-optimal attitude control law with a strategy of applying to orbital control for spinning solar sail driven by re ectivity control. In: Proceedings of the AAS/AIAA Space Flight Mechanics Meeting, 2016: AAS 16–329.
4. Chujo, T., Watanabe, M., Mori, O. Mechanism-free control method of solar/thermal radiation pressure for application to attitude control. Astrodynamics, 2020, 4(3): 205–222.
5. Wie, B. Solar sail attitude control and dynamics, part 1. Journal of Guidance, Control, and Dynamics, 2004, 27(4): 526–535.
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