用于空间站在轨组装的模块化立方体卫星概念

Jiaolong Zhang, Jun Zhou
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引用次数: 1

摘要

为完成航天员在空间站操作的微卫星在轨装配,开展在轨服务和空间试验,将标准化模块化装配概念与立方体卫星技术相结合,提出模块化立方体卫星概念,并将立方体卫星构建体系由板级模块化装配升级为功能模块化装配。首先,在功能独立性和物理独立性的基础上,将立方体卫星划分为多个具有标准结构和接口的功能模块,采用对称排列的母-公-母标准接口实现相邻模块之间的柔性装配。其次,介绍了两种机械对接接口,并详细分析了它们的优缺点。再次,对机械对接界面进行了理论力学分析、有限元计算和样机试验。实验结果表明,该机械对接接口的精度和强度能够满足空间站上的装配要求。提出的模块化立方体卫星概念和标准机械对接接口与传统立方体卫星结构兼容,不占用其内部空间,可实现立方体卫星的模块化装配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A modular CubeSat concept for on-orbit assembly on the space station
In order to complete the on-orbit assembly of microsatellites operated by astronauts on the space station and carry out on-orbit service and space tests, the modular CubeSat concept is proposed by combining the concept of standardized modular assembly with the CubeSat technology, and then the CubeSat building system is upgraded from board-level modular assembly to functional modular assembly. Firstly, on the basis of the functional independence and physical independence, the CubeSat is divided into several functional blocks having standard structure and interfaces, and the symmetrically arranged female-male-female standard interface is used to realize flexible assembly between adjacent blocks. Secondly, two kinds of mechanical docking interface are introduced and their advantages and disadvantages are analyzed in detail. Thirdly, the theoretical mechanical analysis, finite element calculation and prototype tests are carried out on the mechanical docking interface. The experimental results show that the precision and strength of the mechanical docking interface can meet the assembly requirements on the space station. The proposed modular CubeSat concept and standard mechanical docking interface are compatible with the traditional CubeSat structure, without occupying its internal space, and can realize the modular assembly of CubeSat.
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