Cycler Orbits and the Solar System Pony Express

M. S. Net, Etienne Pellegrini, J. V. Hook
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引用次数: 1

Abstract

In this work, we explore the concept of a secondary “data mule” consisting of a small satellite used to ferry data from a Mars mission to Earth for downlink. The concept exploits the fact that two nearby optical communicators can achieve extremely high data rates, and that a class of trajectories called “cyclers” can carry a satellite between Mars and Earth regularly. By exploiting cycler orbits, the courier needs minimal onboard propulsion. However, cycler orbits have long periodicity, as it can take years for the satellite, Mars, and Earth to repeat their relative geometry. Therefore, we propose the use of a network of such cycler “couriers” on phase-shifted trajectories to achieve a regular cadence of downlink trips. We design a series of search and optimization steps that can output a set of trajectories that at first approximation have low onboard propulsion requirements and can be used for any regular logistics network to and from Mars, then derive the link budget for proximity optical communications to show that this network can ferry large amounts of data.
循环轨道和太阳系快马邮递
在这项工作中,我们探索了二级“数据骡子”的概念,该概念由一颗小卫星组成,用于将火星任务的数据传送到地球进行下行。这个概念利用了这样一个事实:两个附近的光通信器可以实现极高的数据速率,一类被称为“循环器”的轨道可以在火星和地球之间定期携带卫星。通过利用自行车轨道,快递员只需要最小的机载推进力。然而,周期星轨道具有很长的周期性,因为卫星、火星和地球可能需要数年的时间来重复它们的相对几何形状。因此,我们建议在相移轨迹上使用这种循环器“信使”网络,以实现有规律的下行行程节奏。我们设计了一系列搜索和优化步骤,可以输出一组轨迹,这些轨迹在初步近似上具有较低的机载推进要求,可以用于往返火星的任何常规物流网络,然后推导出近距离光通信的链路预算,以表明该网络可以运送大量数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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