Progress in Zero-gravity Unloading Test and System Research of Solar Wing

Q3 Engineering
Zemiao Hou, Qiu Li, Yuemin Wu, Qiang Yu, Hongfei Liang
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引用次数: 0

Abstract

Aim: The solar wing undertakes the important task of providing energy for spacecraft. The deployment test of the solar wing in a zero gravity environment using a zero gravity system on the ground is an important link to ensure the safe and stable deployment of the solar wing in space. This article briefly describes the development process and research progress of solar wings, introduces the ground zero gravity test methods and test platforms for solar wings, including some patents for improving the ground zero gravity test platform for solar wings, and points out some urgent problems that need to be solved in the zero gravity unloading test and system at present. Background: The solar wing needs to be deployed in the weightlessness environment of space before working. Objective: The objective of this study is to summarize the zero gravity experimental methods and systems of solar wings, introduce their categories, characteristics, and development. Methods: This article summarizes various scientific research achievements in the zero gravity test of solar wings, and introduces the advantages and disadvantages of the zero gravity test method of solar wings. Conclusion: Although research on zero-gravity unloading test systems for solar wings is continuously advancing, there are still several technological bottlenecks that need to be overcome in terms of system precision, payload capacity, dynamic simulation, method optimization, diversifying zero-gravity test methods and system universality for different types of solar panel unloading.
太阳能机翼零重力卸载试验及系统研究进展
目的:太阳能翼承担着为航天器提供能量的重要任务。利用地面零重力系统进行太阳能翼在零重力环境下的展开试验,是保证太阳能翼在空间安全稳定展开的重要环节。本文简要介绍了太阳能机翼的发展历程和研究进展,介绍了太阳能机翼的地面零重力试验方法和试验平台,包括改进太阳能机翼地面零重力试验平台的一些专利,并指出了目前在零重力卸载试验和系统中急需解决的一些问题。背景:太阳能翼需要在太空失重环境下展开才能工作。目的:综述了太阳能机翼的零重力实验方法和系统,介绍了它们的种类、特点和发展。方法:本文总结了太阳能机翼零重力试验的各种科研成果,并介绍了太阳能机翼零重力试验方法的优缺点。结论:虽然太阳能翼零重力卸载试验系统的研究在不断推进,但针对不同类型太阳能电池板卸载,在系统精度、载荷能力、动态仿真、方法优化、零重力试验方法多样化、系统通用性等方面仍存在若干技术瓶颈需要克服。
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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来源期刊
Recent Patents on Engineering
Recent Patents on Engineering Engineering-Engineering (all)
CiteScore
1.40
自引率
0.00%
发文量
100
期刊介绍: Recent Patents on Engineering publishes review articles by experts on recent patents in the major fields of engineering. A selection of important and recent patents on engineering is also included in the journal. The journal is essential reading for all researchers involved in engineering sciences.
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