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Satellite Attitude Control and Power Tracking with VSCMGs During Large-angle and Agile Attitude Maneuvers

机译:大角度和敏捷姿态演习中使用VSCMG的卫星姿态控制和功率跟踪

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In recent years, the use of VSCMG/IPACS for satellites has been considered, because Earth observation satellites are required to have agility and miniaturization. However, in previous research, the control laws of VSCMG/IPACS at large-angle and agile attitude maneuvers have not been studied. In this study, we clarify that it is impossible for conventional methods to achieve large-angle and agile attitude maneuvers, while accurately tracking power. Therefore, we propose a system capable of simultaneous satellite attitude control and power tracking with VSCMG during large-angle and agile attitude maneuvers. The proposed steering law switches the steering laws according to singularities, and enables the satellite to change attitude quickly without power errors. In addition, numerical simulations demonstrate through comparison that the proposed steering law is more useful than conventional steering laws.
机译:近年来,已经考虑将VSCMG / IPACS用于卫星,因为要求地球观测卫星具有敏捷性和小型化。然而,在先前的研究中,尚未研究VSCMG / IPACS在大角度和敏捷姿态操纵下的控制规律。在这项研究中,我们澄清了传统方法不可能在精确跟踪功率的同时实现大角度和敏捷的姿态操纵。因此,我们提出了一种在大角度和敏捷姿态操纵过程中能够同时通过VSCMG进行卫星姿态控制和功率跟踪的系统。所提出的操纵定律根据奇异点来切换操纵定律,并使卫星能够迅速改变姿态而不会发生功率误差。另外,数值模拟通过比较证明了所提出的转向规律比常规的转向规律更有用。

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