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首页> 外文期刊>Celestial Mechanics and Dynamical Astronomy: An international journal of space dynamics >Bounded relative motions for formation flying in displaced orbits by low-thrust propulsion
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Bounded relative motions for formation flying in displaced orbits by low-thrust propulsion

机译:通过低推力推动,在流离失所的轨道中形成有界相对运动

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摘要

This paper discusses a numerical searching approach for the relative motion of formation flying in displaced orbits by spacecraft with low-thrust propulsion. The nonlinear dynamical model of spacecraft is established in a two-body rotating reference frame with arbitrary polar component of momentum and thrust-induced acceleration. Motions near the stable equilibria are distinguished from each other by means of five-dimensional variables, which can then be compressed uniquely into two-dimensional mapping images characterized by the crossing interval and the angle drifts. The surjective but not injective mapping makes the generation of three configurations of the relative motions possible. The corresponding relative orbits for three kinds of two-spacecraft formation flying are searched and exemplified based on the formation conditions formulized as functions of the crossing interval and the angle drifts. Furthermore, based on the assignment of displaced relative orbits to five-dimensional vector, the working orbit of the deputy for a specific chief can also be searched via the optimization algorithm to generate the bounded relative motion with the minimum thrust acceleration magnitude, which is of certain significance in reducing fuel consumption of formations.
机译:本文讨论了通过低推力推进的航天器在流离失所轨道中飞行的相对运动的数值搜索方法。在双体旋转参考框架中建立了航天器的非线性动力学模型,其具有动量和推力引起的加速度的任意极性分量。稳定均衡附近的动作通过五维变量彼此区分,然后可以唯一地压缩到由交叉间隔和角度漂移的特征的二维映射图像中。该形状但不是注射映射使得可以产生可能的三种相对运动的配置。基于作为交叉间隔和角度漂移的函数制定的形成条件,搜索和举例说明了三种双航天器形成飞行的相应相对轨道。此外,基于移位的相对轨道对五维向量的分配,还可以通过优化算法搜索特定负责任的代表的工作轨道,以产生具有最小推力加速度的有界相对运动,这是减少形成燃料消耗的一定意义。

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