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The optimal control for the tethered system formed by an asteroid and a solar sail

机译:小行星和太阳帆形成的系留系统的最佳控制

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This paper focuses on a method of changing the orbit of an asteroid by attaching a solar sail to the asteroid. First, the dynamic model of the tethered system is derived. Legendre pseudospectral method is then used to discretize the system, and the sequence of two quadratic programming is utilized to obtain the optimal control law. Simulation results show that the tethered solar sail can efficiently change the asteroid's orbit. Moreover, the problem of the tether twining around the asteroid caused by the relative orbit motion between the solar sail and the asteroid can be avoided. Finally, the effectiveness of altering an asteroid's orbit by different solar sails is analyzed. Simulation results show that when the area of the solar sail is 10~6 m~2, the asteroid can be deflected at 1.227 × 10~8 m by the solar sail after about 20 years, which is better than the effect of a gravitational tractor.
机译:本文着重于通过将太阳帆附着到小行星来改变小行星轨道的方法。首先,推导了系留系统的动力学模型。然后使用勒让德伪谱方法对系统进行离散化,并利用两个二次规划的序列来获得最优控制律。仿真结果表明,拴系的太阳帆可以有效地改变小行星的轨道。而且,可以避免由于太阳帆和小行星之间的相对轨道运动而引起的系绳缠绕在小行星周围的问题。最后,分析了通过不同太阳帆改变小行星轨道的有效性。仿真结果表明,当太阳帆的面积为10〜6 m〜2时,约20年后小行星可以被太阳帆偏转到1.227×10〜8 m,这比重力牵引的效果要好。 。

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