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A numerical mapping of energy gains in a powered Swing-By maneuver

机译:通过动力运转中的能量收益的数值映射

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摘要

The present paper studies the effects of a powered Swing-By maneuver, considering the particular and important situations where there are energy gains for the spacecraft. The objective is to map the energy variations obtained from this maneuver as a function of the three parameters that identify the pure gravity Swing-By with a fixed mass ratio (angle of approach, periapsis distance and velocity at periapsis) and the three parameters that define the impulsive maneuver (direction, magnitude and the point where the impulse is applied). The mathematical model used here is the version of the restricted three-body problem that includes the LemaItre regularization, to increase the accuracy of the numerical integrations. It is developed and implemented by an algorithm that obtains the energy variation of the spacecraft with respect to the largest primary of the system in a maneuver where the impulse is applied inside the sphere of influence of the secondary body, during the passage of the spacecraft. The point of application of the impulse is a free parameter, as well as the direction of the impulse. The results make a complete map of the possibilities, including the maximum gains of energy, but also showing alternatives that can be used considering particularities of the mission.
机译:本文研究了动力摆动的影响,考虑到航天器有能量收益的特定和重要情况。目的是映射从该机动获得的能量变化,作为三个参数的函数,该参数识别纯重力摆动 - 以固定的质量比(接种角度,Periapsis的速度,围绕速度和速度)和定义的三个参数脉冲机动(施加脉冲的方向,幅度和点)。这里使用的数学模型是包含LEMAITRE正则化的受限三体问题的版本,以提高数值集成的准确性。它是由算法开发和实现的,该算法在航天器通过过程中,在施加在次要体的影响范围内的机构中,可以在施加脉冲内部施加脉冲的施工中的最大主机的算法开发和实现。脉冲的应用点是一个自由参数,以及脉冲的方向。结果制定了完整的可能性地图,包括能源的最大收益,也显示了考虑考虑使命的特殊性的替代方案。

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