航天器太阳能电池阵列设计分析

Z. A. Kazantsev, A. M. Eroshenko, L. A. Babkina, A. Lopatin
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引用次数: 0

摘要

太阳能电池阵列为航天器设备提供电力,也为轨道阴影部分使用的电化学电池提供充电。光伏转换器是将光能转化为太阳辐射形成太阳能电池的基础。它们的工作原理是基于光电效应的现象。本文概述了太阳能电池的发展和现代航天器太阳能电池设计的分类。该报告考虑了第一艘宇宙飞船和空间站上使用的固定式和可展开式太阳能电池。太阳能电池设计的分类是根据其特性进行的。这些特征是支撑结构的刚性,在起始位置的放置方法和朝向光源的定向方法。分类包括刚性太阳能电池板、柔性基板太阳能电池板、充气太阳能电池板、自膨胀太阳能电池板和太阳能聚光板。在该分类的每个设计组中,都给出了相应的太阳能电池示例。所提出的综述和分类使跟踪航天器太阳能电池阵设计的发展趋势成为可能。
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Analysis of design of spacecraft solar arrays
Solar arrays supply electrical power to spacecraft equipment and also provide charging of electrochemical batteries used in the shadow sections of the orbit. Photovoltaic converters of light energy of solar radiation form the basis of the solar battery. Their principle of operation is based on the phenomenon of the photoelectric effect. The article provides an overview of the development of solar cells and the classification of modern designs of solar cells for spacecraft. The review considers stationary and deployable solar batteries used both on the first spacecraft and on space stations. The classification of solar cell designs is made taking into account their characteristic features. These features are the rigidity of the supporting structure, the method of placement in the starting position and the method of orientation towards the light source. The classification covered rigid panel solar arrays, flexible substrate solar panels, inflatable solar arrays, self-expanding solar arrays, and solar concentrator panels. In each design group of this classification, corresponding examples of solar cells are presented. The presented review and classification makes it possible to track trends in the development of solar array designs for spacecraft.
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发文量
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审稿时长
8 weeks
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