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PERC plus : industrial PERC solar cells with rear Al grid enabling bifaciality and reduced Al paste consumption

机译:PERC plus:具有背面铝栅的工业PERC太阳能电池,可实现双面加工并减少铝浆消耗

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摘要

Passivated emitter and rear cell (PERC) solar cells are currently being introduced into mass production. In this paper, we report a novel PERC solar cell design that applies a screen-printed rear Al finger grid instead of the conventional full-area aluminum (Al) rear layer while using the same PERC manufacturing sequence. We name this novel cell concept PERC+ because it offers several advantages. In particular, the Al paste consumption of the PERC+ cells is drastically reduced to 0.15g instead of 1.6g for the conventional PERC cells. The Al fingers create 2-mu m-deeper aluminum back surface fields, which increases the open-circuit voltage by 4mV. The five-busbar Al finger grid enables bifacial applications of the PERC+ cells with front-side efficiencies up to 20.8% and rear-side efficiencies up to 16.5% measured with a black chuck. The corresponding bifaciality is 79%. When applied in monofacial modules where the white back sheet acts as external rear reflector, the efficiency of the PERC+ cells is estimated to 20.9%, which is comparable with conventional PERC cells. Whereas Institute for Solar Energy Research Hamelin developed the aforementioned PERC+ results, SolarWorld independently pioneered a very similar bifacial PERC+ cell process starting in 2014. Transfer into mass production has been successfully accomplished, and novel glass-glass bifacial PERC+ modules have been launched at the Intersolar 2015 based on a most simple, lean, and cost-effective bifacial cell process. These new bifacial PERC+ modules show an increase in annual energy yield between 5% and 25% in simulations, which is confirmed by first outdoor measurements. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:钝化的发射极和后电池(PERC)太阳能电池目前正投入批量生产。在本文中,我们报告了一种新颖的PERC太阳能电池设计,该设计采用丝网印刷的背面Al指状栅代替传统的全面积铝(Al)背面,同时使用相同的PERC制造顺序。我们将这种新颖的电池概念命名为PERC +,因为它具有多个优点。尤其是,PERC +电池的铝浆消耗量大幅度降低至0.15g,而不是传统PERC电池的1.6g。铝指会产生2微米深的铝背面电场,从而使开路电压增加4mV。五个母线的Al指栅可实现PERC +电池的双面应用,使用黑卡盘进行测量,其正面效率高达20.8%,背面效率高达16.5%。相应的双面性为79%。当应用于白色背板充当外部后反射器的单面组件时,PERC +电池的效率估计为20.9%,与传统的PERC电池相当。太阳能研究所哈梅林(Hamelin)提出了上述PERC +结果,而SolarWorld从2014年开始就率先采用了非常相似的双面PERC +电池工艺。成功实现了批量生产,并在Intersolar上推出了新型玻璃-玻璃双面PERC +模块。 2015年基于最简单,精益和经济高效的双面电池工艺。这些新的双面PERC +模块在模拟中显示出年发电量增加了5%至25%,这一点已通过首次户外测量得到了证实。版权所有(c)2015 John Wiley&Sons,Ltd.

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