Understanding the Influence of Busbars in Large-Area IBC Solar Cells by Distributed SPICE Simulations

Photovoltaics, IEEE Journal of  (2015)

引用 13|浏览2
暂无评分
摘要
In this paper, we model a large-area high-efficiency interdigitated back-contact (IBC) solar cell by means of a distributed electrical network. The simulation tool allows accounting for the distributed resistive effects in diffusions and metallization. The model also considers the electrical shading effect and resistive losses due to both back-surface field (BSF) and emitter busbars. A calibrated model is used to investigate the case of a large-area (15.6 × 15.6 cm2) IBC cell, in which we investigate the influence of key busbar parameters: number of busbars, busbar width, soldering pitch (for module connection), and metal sheet resistance. The predictive simulations allow finding out the optimum number of busbars, arising from a tradeoff between the electrical shading effect due to the BSF busbars and resistive losses due to the emitter busbars and the fingers. Moreover, we show how the distance between soldering points on the metal busbars influences the choice of the busbar width. We found out that if an adequate number (>7) of soldering points is adopted, the busbar width should be kept lower than 0.5 mm. On the other hand, the adoption of a thick Cu-plating (15 μm) leads to an increase of efficiency of 0.2%abs with respect to the case of sputtered Al metal (3 μm thick).
更多
查看译文
关键词
spice,busbars,copper,diffusion,electric resistance,metallisation,solar cells,soldering,cu,cu-plating,back-surface field busbars,busbar width,diffusions,distributed spice simulations,distributed electrical network,distributed resistive effects,electrical shading effect,emitter busbars,large-area high-efficiency interdigitated back-contact solar cell,metal busbars,metal sheet resistance,metallization,optimum busbar number,resistive losses,size 15 mum,soldering pitch,soldering points,busbar,distributed model,electrical shading,interdigitated back-contact (ibc),photovoltaic,simulations,solar cell,computational modeling,resistance
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要