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The XR nonimaging photovoltaic concentrator

机译:XR非成像光伏聚光器

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摘要

The performance of the XR solar concentrator, using a high efficiency multi-junction solar cell developed recently by Spectrolab, is presented. The XR concentrator is an ultra-compact Nonimaging optical design composed of a primary mirror and a secondary lens, which can perform close to the thermodynamic limit of concentration (maximum acceptance angle for a given geometrical concentration). The expected acceptance angle of the concentrator is about ±2 deg for a geometrical concentration of 800x (a Fresnel lens and secondary system typically has ±0.6 deg of acceptance for 300x of geometrical concentration). This concentrator is optimized to improve the irradiance distribution on the solar cell keeping it under the maximum values the cell can accept. The XR concentrator has high manufacturing tolerance to errors and can be produced using low cost manufacturing techniques. The XR is designed with the Simultaneous Multiple Surface (SMS) design method of Nonimaging Optics. Its application to high-concentration photovoltaics is now being developed in a consortium led by The Boeing Company, which has recently been awarded a project by the US DOE in the framework of the Solar America Initiative.
机译:介绍了使用Spectrolab最近开发的高效多结太阳能电池的XR太阳能集中器的性能。 XR聚光器是一种超紧凑的非成像光学设计,由一个主镜和一个辅助透镜组成,其性能可以接近浓度的热力学极限(对于给定的几何浓度,最大接受角)。对于800x的几何浓度,集中器的预期接受角约为±2度(对于300x的几何浓度,菲涅耳透镜和辅助系统通常具有±0.6度的接受度)。优化了该集中器,以改善太阳能电池上的辐照度分布,使其保持在电池可以接受的最大值以下。 XR集中器具有很高的制造误差容忍度,可以使用低成本制造技术来制造。 XR采用非成像光学的同时多表面(SMS)设计方法进行设计。波音公司领导的一个财团目前正在开发将其应用到高浓度光伏领域。波音公司最近在美国太阳能协会倡议的框架下获得了美国能源部授予的一个项目。

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