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Evaluation of spectrum-splitting dichroic mirrors for PV mirror tandem solar cells

机译:光伏镜串联太阳能电池的分光二向色镜评估

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Single-junction solar cells are approaching their theoretical efficiency limit, and tandem or multi-junction architectures provide a route for further increasing efficiency. However, due to high material cost, these technologies have traditionally been restricted to high concentrations with the penalty of the loss of diffuse light in outdoor applications. We propose a new tandem concept called a “PVMirror” that makes use of the global spectrum. It utilizes PV cells as a three-in-one technology-they act as a concentrating mirror, spectrum splitter, and high-efficiency light-to-electricity converter. A key element of this technology is an effective spectrum-splitting dichroic mirror, and this paper evaluates three dichroic mirror designs. Prototype PVMirrors with these mirrors and silicon heterojunction solar cells were made, and their reflection and transmission spectra confirm the spectrum-splitting capability of the dichroic mirrors. Outdoor testing shows that reflected light is successfully concentrated to a focus at which the second sub-cell in the tandem is to be located.
机译:单结太阳能电池正接近其理论效率极限,而串联或多结架构为进一步提高效率提供了一条途径。然而,由于高昂的材料成本,这些技术传统上一直限于高浓度,而在室外应用中损失了漫射光。我们提出了一个新的串联概念,称为“ PVMirror”,它利用了全球频谱。它利用光伏电池作为三合一技术,将它们用作聚光镜,光谱分离器和高效的光电转换器。该技术的关键要素是有效的光谱分离二向色镜,本文评估了三种二向色镜设计。制备了具有这些反射镜和硅异质结太阳能电池的原型PVMirror,其反射和透射光谱证实了二向色镜的光谱分离能力。户外测试表明,反射光已成功集中到一个串联的第二个子电池所在的焦点。

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