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Multi-busbar solar cells and modules: high efficiencies and low silver consumption

机译:多母线太阳能电池和模块:高效率和低银消耗

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Ideally, future photovoltaic modules show higher power output without increasing costs during cell production or module interconnection. Today significant losses occur during stringing the cells in a module by using standard 3-busbar technology. In this paper an elegant approach for a front side design is discussed by using more busbars than the widely used 3-busbar design for the solar cell front electrode. Simulations demonstrated that the multi-busbar design allows higher cell and module efficiencies compared to a state of the art 3-busbar cell design, and in the same time reduces the amount of silver needed for the front electrode. A conventional fall area Al BSF and standard screen printing for the front contact was used for the 6" Cz-Si multi-busbar,solar cells and efficiencies of up to 19.5% have been reached. The solar cells were analyzed on cell and module level and a reduction in Ag consumption for the front electrode of >50%_(abs) could be achieved using the multi-busbar cell design. An additional silver reduction was achieved by replacing the rear side Ag/Al pads with tin pads for the soldering process. These changes in solar cell design reduce significantly the metallization costs and in the same time increase the efficiency.
机译:理想情况下,未来的光伏模块显示出更高的功率输出,而不会在细胞生产或模块互连期间增加成本。今天通过使用标准的3母线技术在模块中划接细胞期间发生显着损失。在本文中,通过使用更多的汇流栏,比太阳能电池前电极的广泛使用的3母线设计讨论了前侧设计的优雅方法。模拟表明,与现有技术的3母线单元设计相比,多汇流条设计允许更高的电池和模块效率,同时减少前电极所需的银量。用于前触点的传统秋季区域AL BSF和标准丝网印刷用于6“CZ-Si多母线,太阳能电池和高达19.5%的效率。在细胞和模块水平上分析了太阳能电池使用多汇流条电池设计可以实现> 50%_(ABS)的前电极的Ag消耗的减小。通过用锡垫更换后侧Ag / Al垫来实现额外的银减少过程。太阳能电池设计的这些变化显着降低了金属化成本,同时增加了效率。

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