Scalable Techniques for Autonomous Construction of a Paraboloidal Space Telescope in an Elliptic Orbit

Aaron John Sabu, Dwaipayan Mukherjee
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Abstract

It is well acknowledged that human-made technology is not always at par with human curiosity, and an example is the inability to send large telescopes to outer space despite their higher resolution and less atmospheric interference. In this paper, we develop a framework for autonomous in-orbit construction using spacecraft formation such that a large telescope can be built in an elliptic orbit using multiple spacecraft. We split this problem into four steps for converging the position and attitude of each spacecraft at predefined values around a central spacecraft. Each spacecraft performs attitude synchronization with its neighbors to match its three degrees of freedom in orientation as a parabolic mirror. Simulations validate our proposed methods and the paper concludes with an open possibility of using other techniques to improve upon existing results.
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椭圆轨道抛物面空间望远镜自主构建的可扩展技术
众所周知,人造技术并不总是与人类的好奇心齐头并进,一个例子是,尽管大型望远镜的分辨率更高,大气干扰更少,但我们无法将它们发射到外层空间。在本文中,我们开发了一种利用航天器编队自主在轨建设的框架,使大型望远镜可以在椭圆轨道上由多个航天器建造。我们将这个问题分为四个步骤,将每个航天器的位置和姿态收敛到一个中心航天器周围的预定义值。每个航天器与相邻航天器进行姿态同步,以匹配其三个自由度的方向,作为抛物面镜。模拟验证了我们提出的方法,并得出结论,使用其他技术改进现有结果的可能性是开放的。
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