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首页> 外文期刊>Journal of the IEST >Concentrated Solar Radiation Simulation For Space Solar Power Module Vacuum Testing
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Concentrated Solar Radiation Simulation For Space Solar Power Module Vacuum Testing

机译:用于空间太阳能模块真空测试的集中太阳辐射模拟

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Space Solar Power (SSP) is broadly defined as the collection of solar energy in space and its wireless transmission for use on Earth. The implementation of such a system could offer energy security, environmental, and technological advantages. The Integrated Symmetrical Concentrator (ISC) and Modular Symmetrical Concentrator (MSC) concepts have received considerable attention among recent commonly proposed SSP implementations. Each concept employs an array of modules for performing conversion of concentrated sunlight into microwaves for transmission to Earth. Until the efforts of the U.S. Naval Research Laboratory, no module prototypes had been subjected to the challenging conditions inherent to the space environment. The customized space simulation testing and the associated development described in this paper detail the efforts to test a prototype module in vacuum under multiple suns of solar concentration. A small vacuum chamber and 4000W Xenon light source were adapted to provide the desired test conditions. In particular, much effort was devoted to arriving at an effective, inexpensive solution that was consistent with the budget constraints of the project without compromising the fidelity and relevance of the tests.
机译:太空太阳能(SSP)的广义定义是太空中太阳能的收集及其在地球上使用的无线传输。这种系统的实施可以提供能源安全,环境和技术优势。集成对称集中器(ISC)和模块化对称集中器(MSC)的概念在最近普遍提出的SSP实现中受到了相当大的关注。每个概念都采用了一系列模块,用于将集中的太阳光转换为微波以传输到地球。在美国海军研究实验室的努力之前,还没有模块原型经受过太空环境固有的挑战性条件。本文中描述的定制空间模拟测试和相关开发详细介绍了在太阳多次聚光的真空下测试原型模块的工作。小型真空室和4000W氙气光源适用于提供所需的测试条件。特别是,在不影响测试的保真度和相关性的前提下,人们付出了很多努力来寻求一种有效,廉价的解决方案,该解决方案与项目的预算约束相一致。

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