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Optical design of a new combo solar concentrator

机译:新型组合式太阳能聚光器的光学设计

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摘要

Light concentrator is a non-imaging optics whose design can seriously affect the performance of a concentrating photovoltaic module. For effectively increasing the incoming light flux, a new combo system designed by the edge-ray theorem was proposed for solar concentration optics. This system is composed of three zones of total internal reflection (TIR) lens, Fresnel lens, and aspherical lens.rnIn this system, the TIR lens is responsible for large bending angle, while the Fresnel lens and aspherical lens are responsible for small bending angle due to their suffering for total internal reflection at large bending angle. For the requirement of compactness, the TIR lens is located at the outmost zone from optical axis of the lens aperture to shorten the depth of the lens system. The aspherical lens is located at the central zone while the Fresnel zone is then aligned between them.rnOn this design example, the size of solar cell is assumed to be a square with a length of 5.5 mm. The diameter of the lens aperture is 120 mm and the depth of the lens is considered to be lain between 60 and 65 mm. Through design analysis, the full acceptance angle is set at 1.0 degree. Design data shows that this new combo system can meet the requirements of solar concentration optics under considerations and its optical efficiency of the whole system can approach to 81%.
机译:聚光器是一种非成像光学器件,其设计会严重影响聚光光伏模块的性能。为了有效地增加入射光通量,提出了一种由边缘射线定理设计的新型组合系统用于太阳聚光光学系统。该系统由三个区域的全内反射(TIR)透镜,菲涅耳透镜和非球面透镜组成。在该系统中,TIR透镜负责较大的弯曲角度,而菲涅耳透镜和非球面透镜负责较小的弯曲角度。由于它们在大弯曲角度下会遭受全内反射的折磨。为了紧凑起见,TIR透镜位于距透镜光圈光轴最远的区域,以缩短透镜系统的深度。非球面透镜位于中心区域,然后菲涅耳区域在它们之间对齐。在此设计示例中,假定太阳能电池的尺寸为长5.5毫米的正方形。镜头光圈的直径为120毫米,镜头的深度被认为介于60至65毫米之间。通过设计分析,将整个接收角设置为1.0度。设计数据表明,考虑到这种新的组合系统,可以满足太阳能聚光光学系统的要求,其整个系统的光学效率可以达到81%。

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