蜂窝状硅太阳能电池前表面的光学建模

A. Volk, William Glover, J. Greulich, S. Gutscher, W. Wolke, M. Zimmer, J. Rentsch, H. Reinecke
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引用次数: 2

摘要

在本研究中,我们评估了蜂窝变形过程的可重复性,并将实验值与模拟值进行了比较。结果表明,利用OPAL程序可以模拟蜂窝纹理。它计算任何入射角的损失,其中通过将光线跟踪与菲涅耳方程解耦来实现短的计算时间。我们研究了各种表面形态及其对反射值的影响。在不同的蚀刻时间蚀刻样品,从而改变蜂窝的几何形状。使用我们的最佳酸蚀刻溶液比例,我们能够制造反射率为R = 19.4% (ω = 85°)的hc织构。在模拟值和测量值之间,我们看到R = 0.3% abs的差异。这个小的偏差导致了模拟和测量样本的相对不准确。重点对不同蜂窝结构进行了数值模拟,并与实验值进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical modelling of the front surface for honeycomb-textured silicon solar cells
In this study we assess the reproducibility of the honeycomb texturing process, and we compare experimental values to a simulation. Our results show that the honeycomb-texture can be simulated with the OPAL program. It calculates the losses of any angle of incidence, where the short computation time is achieved by decoupling the ray tracing from the Fresnel equation. We investigate various surface morphologies and their impact on reflection values. The samples were etched at different etching times, whereby the honeycomb geometries were changed. Using our optimal acid etching solution ratio, we are able to fabricate a HC-texture with a reflectivity of R = 19.4 % (ω = 85°). Between the simulation values and those of the measurement, we see a difference of R = 0.3 %abs. This small deviation causes the relatively inaccuracies of the simulation and the measured samples. The focus is to simulate the different honeycomb structures and compare the values with the experimental values.
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