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Single impulsive transfer to the Earth-Moon triangular point L_4 in a bicircular model

机译:在双圆模型中单次脉冲转移到月球三角点L_4

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This paper investigates a single impulsive strategy of transferring a spacecraft from the Earth to the Earth-Moon triangular point L-4 in the Sun-Earth-Moon bicircular model (BCM). The motion of the spacecraft at L-4 is influenced by the Sun's perturbation and different Sun's initial phase angles can cause different motion. The motion that can easily escape the vicinity of L-4 in a backward propagation is utilized to design the single impulsive transfer to L(4 )and then the window of easily approach (WOEA) to L-4 is defined by analyzing the change in the Jacobi energy of the motion. Accordingly, the perigee of the motion can be obtained by propagating initial state of the spacecraft at L-4 backwards. The transfer whose perigee height is approximated to that of the parking low Earth orbit (LEO) can be utilized as an initial guess, and therefore the single impulsive transfer can be calculated by correcting the Sun's initial phase angle and the flight time. Meanwhile, by comparing the changes in the Jacobi energy and the energy of the spacecraft, it can be found that the lunar flyby enables the single impulsive transfer to be accomplished. Since only one maneuver is required during an entire transfer, this transfer strategy may be more suitable for the small spacecraft that has a limited propulsion capability. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文研究了在太阳-地球-月亮双圆模型(BCM)中将航天器从地球转移到地球-月亮三角点L-4的单一冲动策略。航天器在L-4处的运动受太阳摄动的影响,并且不同的太阳初始相位角会导致不同的运动。利用向后传播中可以轻易逃脱L-4附近的运动来设计向L(4)的单次脉冲传递,然后通过分析L的变化来定义向L-4的容易接近(WOEA)的窗口。运动的雅可比能量。因此,可以通过使航天器的初始状态向后传播L-4来获得运动的近地点。可以将近地点高度近似于驻地低地球轨道(LEO)高度的转移作为初始猜测,因此可以通过校正太阳的初始相位角和飞行时间来计算单次脉冲转移。同时,通过比较雅可比能量和航天器能量的变化,可以发现,月球掠过能够实现单次脉冲传递。由于在整个转移过程中只需要进行一次机动,因此这种转移策略可能更适合于推进能力有限的小型航天器。 (C)2019 Elsevier B.V.保留所有权利。

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