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'METHOD': a tool for mechanical, electrical, thermal, and optical characterization of single lens module design

机译:“ METHOD”:用于对单镜头模块设计进行机械,电气,热和光学表征的工具

摘要

The optical characterization and electrical performance evaluation are essential in the design and optimization of a concentrator photovoltaic system. The geometry, materials, and size of concentrator optics are diverse and different environmental conditions impact their performance. CEA has developed a new concentrator photovoltaic system characterization bench, METHOD, which enables multi-physics optimization studies. The lens and cell temperatures are controlled independently with the METHOD to study their isolated effects on the electrical and optical performance of the system. These influences can be studied in terms of their effect on optical efficiency, focal distance, spectral sensitivity, electrical efficiency, or cell current matching. Furthermore, the irradiance map of a concentrator optic can be mapped to study its variations versus the focal length or the lens temperature. The present work shows this application to analyze the performance of a Fresnel lens linking temperature to optical and electrical performance.
机译:光学特性和电性能评估对于聚光光伏系统的设计和优化至关重要。聚光器光学器件的几何形状,材料和尺寸各不相同,不同的环境条件会影响其性能。 CEA开发了一个新的聚光光伏系统表征台,METHOD,可进行多物理场优化研究。该方法可独立控制晶状体和晶胞温度,以研究它们对系统电学和光学性能的孤立影响。可以根据它们对光学效率,焦距,光谱灵敏度,电效率或电池电流匹配的影响来研究这些影响。此外,可以将聚光器光学器件的辐照度映射成图,以研究其相对于焦距或透镜温度的变化。本工作显示了该应用程序,用于分析将温度与光学和电学性能联系起来的菲涅耳透镜的性能。

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