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A novel three-axis attitude stabilization method using in-plane internal mass-shifting

机译:一种新的三轴姿态稳定方法,使用在平面内部肿块

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This paper investigates the feasibility of using four movable masses distributed in a plane to realize three-axis attitude stabilization. With the proposed distribution and moving the paired masses in the same or opposite direction simultaneously, aerodynamic torque or internal momentum exchange torque is acted on the spacecraft. Then the spacecraft is gradually stabilized under a three-phase control strategy. Each of the three control phases is designed based on optimal control, nonlinear and sliding mode control, respectively. The stability of the proposed controller is given. Furthermore, numerical simulation matches the analytical results presented in this paper. Results show that three-axis attitude stabilization is possible using only in-plane movable masses which weigh less than 10 percent of spacecraft mass. Finally, the proposed control system can be a viable alternative for three-axis attitude stabilization of spacecraft orbiting in low Earth orbit. (C) 2019 Elsevier Masson SAS. All rights reserved.
机译:本文研究了在平面中分布的四个可移动质量来实现三轴姿态稳定的可行性。利用所提出的分布和在相同或相反方向上移动成对质量,在航天器上作用气动扭矩或内部动量交换扭矩。然后在三相控制策略下逐渐稳定航天器。三个控制阶段分别是基于最优控制,非线性和滑动模式控制设计的。给出了所提出的控制器的稳定性。此外,数值模拟与本文提出的分析结果匹配。结果表明,只有在平面内可动质量的平面可移动质量尺寸的距离比航天器质量的10%不到10%,可以实现三轴姿态稳定。最后,所提出的控制系统可以是在低地轨道中的航天器轨道的三轴姿态稳定的可行替代方案。 (c)2019年Elsevier Masson SAS。版权所有。

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