Nonlinear station-keeping control of unstable orbits near collinear libration points

Zhiqin Cai, Jun Zhao, Haijun Peng, Zhaohui Qi
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Abstract

A new nonlinear optimal tracking control method is proposed and analyzed which stabilizes a class of unstable periodic orbits near collinear libration points. Since such libration point orbits are, in general, unstable, spacecraft moving on these orbits must use some form of trajectory control to remain close to their nominal paths. In this study, the control law based on optimal control theory gives a closed-form suboptimal feedback solution to solve this nonlinear control problem. For the case of an unstable orbit which has in space the shape of a curved eight in the Hill restricted three-body problem, we find that the actual trajectory tracks a nominal orbit given in the form of the Fourier series with good accuracy. It is shown that the control acceleration can be provided by a low-thrust engine and that the total fuel cost of the control can be quite reasonable.
共线振动点附近不稳定轨道的非线性保站控制
提出并分析了一种新的非线性最优跟踪控制方法,用于在共线振动点附近稳定一类不稳定周期轨道。由于这样的振动点轨道通常是不稳定的,在这些轨道上运行的航天器必须使用某种形式的轨道控制来保持接近其标称路径。在本研究中,基于最优控制理论的控制律给出了一个封闭形式的次优反馈解来解决这一非线性控制问题。在Hill限制三体问题中,对于空间中具有弯曲八字形状的不稳定轨道,我们发现实际轨道以傅里叶级数的形式跟踪标称轨道,精度很高。结果表明,低推力发动机可以提供控制加速度,并且控制的总燃料成本是相当合理的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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