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Exploration missions in the Sun-Earth-Moon system: A detailed view on selected transfer problems

机译:日月月亮系统中的探索任务:选定转移问题的详细视图

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The Astronautics and Space Station Department of the Universitaet Stuttgart has developed a design environment for the conceptual design of manned space missions. With the assistance of the ESA European Space Operations Center this design environment has been extended to cover exploration missions involving the areas of the collinear Earth-Moon and Sun-Earth libration points, which are of interest as an alternative staging location to the low lunar orbit approach for lunar exploration and for satellite servicing missions, respectively. To allow for a reliable mission design, the transfer times, the ΔV and variations in the ΔV for transfers between the different locations in the Sun-Earth-Moon system must be known, especially taking the rendezvous constraints and safety issues for human spaceflight missions into account. The results of the investigations presented in this paper cover transfer trajectories from Earth to different types of orbits about the collinear Earth-Moon libration points 1 and 2 and further on to the Moon. For the Earth to Earth-Moon libration point transfer, direct trajectories, fly-bys at the Moon and trajectories via the weak stability boundary region of the Sun-Earth system are treated.
机译:斯图加特大学宇航与空间站系已经为载人航天任务的概念设计开发了一个设计环境。在欧洲航天局欧洲空间运行中心的协助下,该设计环境已扩展到涵盖涉及共线地球-月亮和太阳-地球解放点区域的探索任务,这是低月球轨道的替代登台地点。分别用于月球探测和卫星服务任务。为了进行可靠的任务设计,必须知道在太阳-地球-月亮系统中不同位置之间的转移时间,ΔV和ΔV的变化,特别是要考虑到人类太空飞行任务的集合约束和安全问题帐户。本文介绍的研究结果涵盖了从地球到共线地球-月亮解放点1和2以及到月球的不同轨道的转移轨迹。对于地球到地球-月亮的释放点转移,要处理直接轨迹,月球飞越以及经过日地系统弱稳定边界区域的轨迹。

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