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首页> 外文期刊>Celestial Mechanics and Dynamical Astronomy: An international journal of space dynamics >Numerical study of the three-dimensional transit orbits in the circular restricted three-body problem
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Numerical study of the three-dimensional transit orbits in the circular restricted three-body problem

机译:圆形约束三体问题中三维轨道的数值研究

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Transit orbits are defined as the trajectories that can pass through the neck region of the zero velocity surface in the circular restricted three-body problem (CR3BP). The low-energy transfers in the CR3BP or between two CR3BPs are always through the instrumentality of the transit orbits. In this paper, the distribution of the transit orbits in the six-dimensional phase space is explored by using numerical methods. The necessary and sufficient condition of transition is introduced, which defines the distribution of the transit orbits by using the manifolds of the vertical and horizontal Lyapunov orbits and the transit cones. The relationship between the manifolds of the libration point orbits and the boundary of the transit orbits is discovered. By using this relationship, a fast algorithm for detecting the boundary of the transit orbits is developed. Moreover, this boundary is parametrized by using Fourier series, which makes easy to use the conclusions of this paper in future trajectory optimization and mission design. All the analyses in this paper are based on the Sun-Earth CR3BP, but the methods introduced here can be extended to any CR3BPs.
机译:过境轨道定义为在圆形受限三体问题(CR3BP)中可以通过零速度表面的颈部区域的轨迹。 CR3BP中或两个CR3BP之间的低能传递始终是通过过渡轨道的手段。本文利用数值方法研究了六维相空间中的过渡轨道的分布。引入了必要的充分过渡条件,该条件通过使用垂直和水平李雅普诺夫轨道的流形和过渡锥来定义过渡轨道的分布。发现了解放点轨道的流形与过境轨道的边界之间的关系。通过使用这种关系,开发了一种用于检测过境轨道边界的快速算法。此外,通过使用傅里叶级数对该边界进行参数化,这使得在未来的轨迹优化和任务设计中易于使用本文的结论。本文中的所有分析均基于太阳地球CR3BP,但此处介绍的方法可以扩展到任何CR3BP。

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