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首页> 外文期刊>CEAS Space Journal >Weak stability boundary transfer to the Moon from GTO as a piggyback payload on Ariane 5
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Weak stability boundary transfer to the Moon from GTO as a piggyback payload on Ariane 5

机译:弱稳定边界从GTO传递到月球,作为阿里安5号上搭载的载荷

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In cooperation with the German non-profit amateur satellite organisation (AMSAT-DL), the German Aerospace Center developed the idea of using AMSAT’s Earth satellite P3-D as a baseline for a Moon mission. For cost-effectiveness, P3-D was launched as an auxiliary payload on Ariane 5 into a geosynchronous transfer orbit (GTO) and used its on-board propulsion system to achieve a Molniya orbit. The present study describes how a similar satellite can reach a 100 × 100 km lunar orbit with the same launch strategy. A delta-v saving transfer scenario using the weak stability boundary transfer was found to be feasible taking a P3-D-like satellite bus into account. It contains phasing orbits as a solution for non-dedicated launch dates and deals with the constraints of Ariane’s GTO. This approach opens up the opportunity to accomplish a low-cost mission to the Moon with public and scientific value.
机译:与德国非营利业余卫星组织(AMSAT-DL)合作,德国航空航天中心提出了使用AMSAT的地球卫星P3-D作为月球飞行任务基线的想法。为了提高成本效益,P3-D作为辅助载荷在阿丽亚娜5号上发射到地球同步转移轨道(GTO)中,并使用其机载推进系统实现了Molniya轨道。本研究描述了类似的卫星如何以相同的发射策略到达100×100 km的月球轨道。考虑到类似P3-D的卫星总线,发现使用弱稳定性边界转移的delta-v保存转移方案是可行的。它包含定相轨道作为非专用发射日期的解决方案,并解决了阿丽亚娜GTO的限制。这种方法为实现具有公众和科学价值的低成本登月任务提供了机会。

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