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Earth-Moon transfer with near-optimal lunar capture in the restricted four-body problem

机译:受限制的四体问题中的接近月球的地-月转移

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摘要

In this paper, the low energy transfer (LET) from low Earth orbit to a permanent lunar orbit is investigated under the Sun-Earth-Moon-spacecraft restricted four-body problem (RFBP). Based on the near-optimal lunar capture, we propose an optimization method to construct the three-impulse Earth Moon transfer in the RFBP. In the design process, a hybrid model is used to reduce the difficulty of the optimization problem. Compared with the Weak Stability Boundary transfer, the transfer orbit obtained has more chances to insert the spacecraft into low lunar orbit. Besides, compared with the patched conic transfers, the LETs obtained can efficiently reduce the propellant costs, but the transfer durations apparently increase. Finally, the effect of solar gravitation on the transfer is analyzed. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:在本文中,研究了在日地月亮航天器约束四体问题(RFBP)下从低地球轨道到永久性月球轨道的低能传递(LET)。基于近乎最佳的月球捕获,我们提出了一种优化方法来构造RFBP中的三脉冲地球月亮传输。在设计过程中,使用混合模型来减少优化问题的难度。与弱稳定边界转移相比,获得的转移轨道有更多的机会将航天器插入低月球轨道。此外,与修补的圆锥形转移相比,获得的LET可以有效地降低推进剂成本,但是转移持续时间明显增加。最后,分析了太阳引力对传递的影响。 (C)2016 Elsevier Masson SAS。版权所有。

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