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CONCENTRATOR III-V SOLAR CELLS AND MODULES

机译:集中器III-V太阳能电池和模块

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Concentrator technology is considered as a lower cost alternative to the “flat” solar arrays. For high concentration ratios (500x and higher) the use of high-efficiency III-V solar cells is very promising and can provide reduced cell cost contribution to the cost of an installation. The efficiencies of 25-27% were achieved for the singlejunction AlGaAs/GaAs solar cells under 500-1500 suns, AM1.5d. These cells are applied in the concentrator modules based on a concept of the small-aperture refractive concentrators. A modified structure of the high concentration “allglass” PV modules with III-V solar cells is proposed. In the “all-glass” module design, the secondary small-aperture smooth surface lenses arranged in an intermediate composite (glass-silicone) panel are inserted between a panel of the primary composite Fresnel lens concentrators and a panel of the solar cells. Such a design allows fabricating the modules of large total area (up to 0,5 x 1 m²) and improving environmental protection of the cells. The cells as small as 1.2 mm in designated area diameter operating at very high concentration ratio (more than 1000x) can be used in the developed solar PV modules. Also, solar thermo photovoltaics (TPV) is discussed and results of the narrow-gap GaSb and GaAs/Ge cell development for TPV receivers are presented.
机译:集中器技术被认为是“扁平”太阳能阵列的低成本替代方案。对于高浓度比(500倍或更高),使用高效III-V太阳能电池非常有前途,并且可以降低电池成本对安装成本的贡献。单结AlGaAs / GaAs太阳能电池在500-1500阳光(AM1.5d)下的效率达到25-27%。这些单元基于小孔折射聚光器的概念应用于聚光器模块中。提出了具有III-V太阳能电池的高浓度“全玻璃” PV组件的改进结构。在“全玻璃”模块设计中,布置在中间复合(玻璃-有机硅)面板中的次级小孔径平滑表面透镜被插入到初级复合菲涅尔透镜集中器的面板和太阳能电池的面板之间。这样的设计可以制造大面积的模块(最大0.5 x 1平方米)并改善电池的环境保护。在开发的太阳能光伏组件中可以使用指定面积直径小至1.2毫米的电池,以很高的集中度(大于1000倍)运行。此外,讨论了太阳能光伏(TPV),并提出了用于TPV接收器的窄间隙GaSb和GaAs / Ge电池开发的结果。

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