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首页> 外文期刊>Celestial Mechanics and Dynamical Astronomy: An international journal of space dynamics >The use of vertical instability of L1 and L2 planar Lyapunov orbits for transfers from near rectilinear halo orbits to planar distant retrograde orbits in the Earth-Moon system
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The use of vertical instability of L1 and L2 planar Lyapunov orbits for transfers from near rectilinear halo orbits to planar distant retrograde orbits in the Earth-Moon system

机译:使用L1和L2平面Lyapunov轨道的垂直不稳定性用于从近直线卤素轨道转移到地球系统中的平面遥远的逆行轨道

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摘要

This paper highlights natural transport pathways between in-plane and out-of-plane states associated with the vertical instability of planar Lyapunov orbits around the Lagrange points L1 and L2 in the Earth-Moon circular restricted three-body problem. Computations of invariant manifolds associated with the vertical instability of planar periodic orbits, vertically stable and unstable manifolds, enable quantitative analyses of inclination changes. This study finds that multiple lunar flybys gradually change the orbital elements of vertically stable and unstable manifolds, and that the distributions of the affected orbital elements depend on the Jacobi constant and on the associated Lagrange point L1 or L2 of the planar Lyapunov orbits. As an application, this study uses the vertically stable manifolds of the planar Lyapunov orbits as initial guesses for optimizing transfers from near rectilinear halo orbits to planar distant retrograde orbits. Significant v savings as compared with the known solutions demonstrate the usefulness of the vertical instability in spacecraft trajectory designs.
机译:本文突出了与地球循环限制三体问题的拉格朗日点L1和L2周围平面Lyapunov轨道垂直不稳定性的平面内和平面外状态之间的自然传输路径。与平面周期轨道,垂直稳定和不稳定歧管的垂直不稳定性相关联的不变歧管的计算,使得能够进行倾斜变化的定量分析。本研究发现,多个月球蝇卵比逐渐改变垂直稳定和不稳定的歧管的轨道元素,并且受影响的轨道元素的分布取决于雅各的恒定和在平面Lyapunov轨道的相关拉格朗日点L1或L2上。作为一个应用,本研究使用平面Lyapunov轨道的垂直稳定的歧管作为优化从近直线光环轨道的转移到平面逆行轨道的初始猜测。与已知解决方案相比,节省的显着V节省了航天器轨迹设计中垂直不稳定性的有用性。

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