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Consecutive Collision Orbits to Obtain EGA Maneuvers

机译:连续的碰撞轨道以获得EGA MONUVERS

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摘要

Studying optimal space maneuvers that searches the minimum fuel consumption for interplanetary missions is an important field of research for development of space technologies. This paper analyzes optimal maneuvers of a spacecraft that leaves one celestial body and goes back to this same body, using this return passage to perform a gravity assisted maneuvers using the mother planet to change its velocity, energy and angular momentum. During this approach, the space vehicle place itself in another orbit of interest of the mission. The dynamics used to solve this problem is the traditional model of the Restricted Three Body Problem, so it is assumed that the three bodies involved are mass points and don't suffer external disturbances. Using the gravitational attraction and the geometric configuration of the bodies involved, the passage next to the body causes a considerable change in velocity (ΔV), energy (ΔE) and angular momentum of the spacecraft. Several orbits are simulated.
机译:研究搜索行星际任务最低燃料消耗的最佳空间演习是太空技术发展的重要研究领域。本文分析了航天器的最佳机动,即留下一个天体并返回相同的身体,使用这种返回通道使用母行来改变其速度,能量和角动量的重力辅助机动。在这种方法期间,空间车辆在另一个轨道中放置在特派团的另一个轨道中。用于解决这个问题的动态是狭窄的三个身体问题的传统模型,因此假设所涉及的三个身体是质量点,并且不会遭受外部干扰。使用引力的吸引力和所涉及的体的几何构造,身体旁边的通道导致速度(ΔV),能量(ΔE)和航天器的角动量的相当大的变化。模拟了几个轨道。

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