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Uniform concentrating design and mold machining of Fresnel lens for photovoltaic systems

机译:光伏系统菲涅耳透镜的均匀集中设计和模具加工

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摘要

Fresnel lens arrays are widely applied as the core optical component in concentrated photovoltaic (CPV) systems for concentrating light on a solar cell. To improve the photoelectric conversion efficiency of CPV systems, a Fresnel lens design is proposed, in which both uniform concentration and machining feasibility are pursued by means of simpler structure. In this design, the concentrating facets of the Fresnel lens are conical ones with different inclined angles, and the light passing through these conical facets can be superposed on the same position. The optical performance of the lens is analyzed to optimize its geometrical parameters. Towards this uniform concentrating design with a simple structure, an ultra-precision diamond cutting process based on B axis rotation is also developed to machine the Fresnel lens mold. In this process, the V-shaped diamond tool is rotated from right to left to machine the micro grooves of the lens mold with a maximum cutting depth of the groove height, so that the grooves can be prevented from being cut by the tool tip with low strength. Cutting tests of the factors influencing the machining accuracy and surface quality are carried out to optimize the cutting trajectory planning and machining parameters. The Fresnel lens molds with no sharp corner defects and no surface scratches are machined, and dimensional accuracy of 1.0 mu m and surface roughness of better than 13 nm are achieved. Then, a silicone rubber lens is cast based on this mold. Concentrating uniformity test of the lens is conducted, and a concentrating uniformity of better than 75% is achieved. The results show the effectiveness of the uniform concentrating design and the feasibility of the B axis rotating machining process.
机译:菲涅耳透镜阵列广泛应用于用于在太阳能电池上浓缩光的浓缩光伏(CPV)系统中的芯光学部件。为了提高CPV系统的光电转换效率,提出了一种菲涅耳透镜设计,其中通过更简单的结构追求均匀的浓度和加工可行性。在这种设计中,菲涅耳透镜的浓缩刻面是具有不同倾斜角度的锥形,并且通过这些锥形刻面的光可以叠加在相同的位置。分析镜片的光学性能以优化其几何参数。通过简单的结构朝着这种均匀的浓缩设计,还开发了基于B轴旋转的超精密金刚石切割过程,从而为菲涅耳透镜模具加工。在该过程中,V形金刚石工具从右旋转到左侧,以使透镜模具的微凹槽具有凹槽高度的最大切割深度,从而可以防止凹槽通过工具尖端切割低强度。正在进行影响加工精度和表面质量的因素的切割测试,以优化切割轨迹规划和加工参数。没有锋利角缺陷和没有表面划痕的菲涅耳透镜模具是加工的,并且实现1.0μm的尺寸精度和优于13nm的表面粗糙度。然后,基于该模具铸造硅橡胶透镜。进行透镜的浓缩均匀性试验,实现优于75%的浓缩均匀性。结果表明了均匀集中设计的有效性和B轴旋转加工过程的可行性。

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