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Families of halo orbits in the elliptic restricted three-body problem for a solar sail with reflectivity control devices

机译:椭圆形轨道的霍尔轨道家族限制了一个带有反射控制装置的太阳能风帆的三体问题

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Solar sail halo orbits designed in the Sun-Earth circular restricted three-body problem (CR3BP) provide inefficient reference orbits for station-keeping since the disturbance due to the eccentricity of the Earth's orbit has to be compensated for. This paper presents a strategy to compute families of halo orbits around the collinear artificial equilibrium points in the Sun-Earth elliptic restricted three-body problem (ER3BP) for a solar sail with reflectivity control devices (RCDs). In this non-autonomous model, periodic halo orbits only exist when their periods are equal to integer multiples of one year. Here multi-revolution halo orbits with periods equal to integer multiples of one year are constructed in the CR3BP and then used as seeds to numerically continue the halo orbits in the ER3BP. The linear stability of the orbits is analyzed which shows that the in-plane motion is unstable while the out-of-plane motion is neutrally stable and a bifurcation is identified. Finally, station-keeping is performed which shows that a reference orbit designed in the ER3BP is significantly more efficient than that designed in the CR3BP, while the addition of RCDs improve station-keeping performance and robustness to uncertainty in the sail lightness number.
机译:在太阳地球循环限制的三体问题(CR3BP)中设计的太阳能风帆晕轨道提供了效率的参考轨道,因为必须补偿由于地球轨道的偏心引起的扰动。本文提出了一种在太阳地球椭圆型限制的三体问题(ER3BP)中的共线人工平衡点周围计算Halo轨道围绕的卤素轨道的族,用于使用反射率控制装置(RCD)。在这种非自主模型中,只有当它们的时段等于一年的整数倍时才存在周期性光环轨道。这里,在CR3BP中构建了与一年的整数倍数等于整数倍数的多转晕轨道,然后用作种子以在数值上继续ER3BP中的光环轨道。分析轨道的线性稳定性,其示出了在平面外运动中中性稳定并且识别出分叉的情况下不稳定。最后,执行站保持的,表明在ER3BP中设计的参考轨道比CR3BP中设计的高效更高,而加入RCD可提高帆灯数中的不确定性的驻地性能和鲁棒性。

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