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Optical components for space-based solar plant lighting - development and evaluation of key components

机译:基于空间的太阳能电厂照明的光学元件 - 关键部件的开发和评估

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In this paper, we discuss the results of theoretical and experimental study of key components of the optical waveguide (OW) solar plant lighting system. In this system, solar radiation is collected by the concentrator which transfers the concentrated solar radiation to the OW transmission line consisting of low-loss optical fibers. The OW line transmits the solar radiation to the selective beam splitter where the solar spectra is divided into two components: plant lighting spectra (400 nm<λ<700 nm) and power generation spectra (λ>700 nm). The plant lighting spectra are transmitted to the plant growth chamber where the solar radiation from the optical fibers is de-focused for optimum intensity for plant growing. The power generation spectra are transmitted to the photovoltaic (PV) power generator for power generation. The topics discussed in this paper include: thermal testing of the optical fiber cable in the simulated space environment; fusion splicing of optical fibers; and performance of the liquid lightguide.
机译:在本文中,我们讨论了光波导(OW)太阳能厂照明系统的关键部件的理论和实验研究的结果。在该系统中,太阳辐射由浓缩器收集,该浓缩器将浓缩的太阳辐射传递到由低损耗光纤组成的欠输电线路。 OW线将太阳辐射传输到选择性分束器,其中太阳能光谱被分成两个部件:工厂照明光谱(400nm <λ<700nm)和发电光谱(λ> 700nm)。植物照明光谱被传递到植物生长室,其中来自光纤的太阳辐射被去聚焦以实现植物生长的最佳强度。发电光谱被传递到用于发电的光伏(PV)发电机。本文讨论的主题包括:在模拟空间环境中的光纤电缆的热测试;光纤熔接拼接;和液体光导的性能。

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