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1000x shadow-free mirror-based Köhler concentrator

机译:基于1000x无阴影镜面的Köhler集中器

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A new design for a photovoltaic concentrator, the most recent advance based on the Kohler concept, is presented. Thesystem is mirror-based, and with geometry that guaranties a maximum sunlight collection area (without shadows, likethose caused by secondary stages or receivers and heat-sinks in other mirror-based systems). Designed for a concentration of 1000x, this off axis system combines both good acceptance angle and good irradiance uniformity on the solar cell. The advanced performance features (concentration-acceptance products –iCAP/i- about 0.73 and affordable peak and average irradiances) are achieved through the combination of four reflective folds combinedwith four refractive surfaces, all of them free-form, performing Köhler integration sup2/sup. In Köhler devices, the irradiance uniformity is not achieved through additional optical stages (iTIR/i prisms), thus no complex/expensive elements to manufacture are required. The rim angle and geometry are such that the secondary stage and receivers are hidden below the primary mirrors, so maximum collection is assured. The entire system was designed to allow loose assembly/alignment tolerances (through high acceptance angle) and to be manufactured using already well-developed methods for mass production, with high potential for low cost. The optical surfaces for Köhler integration, although with a quite different optical behavior, have approximately the same dimensions and can be manufactured with the same techniques as the more traditional secondary optical elements used for concentration (typically plastic injection molding or glass molding). This paper will show the main design features, along with realistic performance simulations considering all spectral characteristics of the elements involved.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:提出了一种用于光伏聚光器的新设计,这是基于科勒概念的最新技术。该系统是基于镜像的,并且具有可以保证最大的阳光收集区域的几何结构(没有阴影,如其他次级基于镜像的系统中的次级或接收器和散热器造成的阴影)。该离轴系统设计用于1000x的集中度,在太阳能电池上兼具了良好的接受角和良好的辐照度均匀性。先进的性能特征(浓度接受产品– CAP -约0.73,可承受的峰值和平均辐照度)是通过四个反射折痕与四个折射面的组合实现的,它们全部为自由形, Köhler集成 2 。在科勒设备中,不能通过附加的光学平台(TIR棱镜)来实现辐照度均匀性,因此不需要制造复杂/昂贵的元件。轮缘角度和几何形状使得次级镜台和接收器隐藏在主镜下方,因此可以确保最大程度的收集。整个系统的设计允许宽松的装配/对准公差(通过大接受角),并使用已经开发的用于批量生产的方法制造,具有很高的低成本潜力。用于Köhler集成的光学表面尽管具有非常不同的光学行为,但具有大约相同的尺寸,并且可以使用与用于聚光的传统光学辅助光学元件(通常是塑料注射成型或玻璃成型)相同的技术制造。本文将展示主要设计功能,以及考虑到所涉及元素的所有光谱特性的逼真的性能仿真。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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