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Self-deployable structure designed for space telescope for microsatellite application

机译:用于微卫星应用的空间望远镜的可自部署结构

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With the gradual development of micro-satellite technology and the extension of application field of earth observation technology, researchers show more concern and attention on how to obtain high-resolution images with microsatellite platform equipped with space telescope. Such microsatellites require the space telescopes with small volume, low mass and low cost. Deployable telescope is a good choice to meet these requirements, and it has the same capabilities as the traditional space telescope. We investigate a space telescope with smart self-deployable structure. The telescope is folded before launch, the distance between primary mirror and secondary mirror becomes short and the volume of the telescope becomes small, and the telescope extends to its working configuration after it is in orbit. The deployable structure is one of the key techniques of deployable space telescope, and this paper focuses on the design of a self-deployable structure of the secondary mirror. There are mainly three parts in this paper. Firstly, the optics of the telescope is presented, and a Ritchey-Chretien (RC) type optical system is designed. Secondly, the self-deployable structure is designed and the finite element method (FEM) is used to analyze dynamics of the extended telescope. Thirdly, an adjusting mechanism with six degrees of freedom to correct the misalignment of the secondary mirror is investigated, and the kinematics is discussed.
机译:随着微卫星技术的逐步发展和对地观测技术应用领域的扩展,研究人员对如何利用配备有空间望远镜的微卫星平台获取高分辨率图像越来越关注和关注。这样的微卫星需要体积小,质量轻且成本低的太空望远镜。部署式望远镜是满足这些要求的不错选择,它具有与传统太空望远镜相同的功能。我们研究具有智能自部署结构的太空望远镜。望远镜在发射前被折叠,主镜和副镜之间的距离变短,望远镜的体积变小,并且在进入轨道后,望远镜会延伸到其工作状态。可展开结构是可展开空间望远镜的关键技术之一,本文重点研究了副镜的可自展开结构的设计。本文主要包括三个部分。首先,介绍了望远镜的光学系统,并设计了Ritchey-Chretien(RC)型光学系统。其次,设计了可自行部署的结构,并使用有限元方法(FEM)分析了扩展望远镜的动力学特性。第三,研究了具有六个自由度的校正机构,以校正副镜的未对准,并讨论了运动学。

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