评价太阳能电池串联电阻的综合经验模型

N. Chen, A. Chowdhury, A. Ebong
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摘要

本文报道了带分段金属栅格的丝网印刷硅太阳能电池串联电阻的经验模型。针对网格线截面的准高斯形状,采用网格线实际截面的数学表达式代替简单的矩形形状。并引入网格线和母线的分段来评估对串联电阻和太阳能电池性能的影响。这种评估的优势可以用来确定网格几何形状和金属电极分布方面的最佳金属网格设计。研究发现,对于工业尺寸的单晶硅太阳能电池,其3根母线宽度为1.5 mm, 92根栅格线宽度为~50°m,栅格线的最佳分割应为~0.67 mm,母线的最佳分割应为线间距。进一步的研究表明,母线的分段比网格线对效率的影响要大得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive empirical model for evaluation of the series resistance of a solar cell
This paper reports on the empirical model for series resistance (Rs) of a screen-printed silicon solar cell with segmented metal grids. Due to the quasi-Gaussian shape of gridline cross section, a mathematical expression of the practical cross section of gridline was implemented instead of the simple rectangular shape. And segmentations of gridlines and busbars were introduced to assess the impact on series resistance and solar cell performance. The advantage of this evaluation can be taken to determine the optimal metal grid design in terms of grid geometries and distributions of metal electrodes. It was found that for an industrial size monocrystalline silicon solar cell with 3 busbars having a width of 1.5 mm, and 92 gridlines of ~50°m width, the optimal segmentation for gridlines should be ~0.67 mm, and for busbars should be the line spacing. A further study reveals that the segmentations in busbars has much larger impact on efficiency than gridlines.
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