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Innovative Front Grid Design, Four-Streets and Five-Busbars (4S-5BB), for High Efficiency Industrial Al-BSF Silicon Solar Cell

机译:创新的前栅设计,四路和五路汇流排(4S-5BB),用于高效工业Al-BSF硅太阳能电池

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摘要

This letter reports on an innovative front grid design that is capable of: 1) decreasing the metal shading; 2) increasing the short-circuit current (); 3) increasing the open-circuit voltage (); 4) maintaining the fill factor; and 5) increasing the efficiency of an industrial Al back surface field (Al-BSF) solar cell. Because the design incorporates four-streets and five-busbars (4S-5BB), it uses less front silver metal ( mg) than the conventional 3BB ( mg), hence the cost reduction from 6.07 to 3.426 ¢ per cell in metallization with no additional processing step. The 4S-5BB design has shown great potential for achieving >20% efficiency for the industrial size Al-BSF silicon solar cell. In this letter, the preliminary result for the 4S-5BB industrial Al-BSF cell having average efficiency of 19.66% compared with 19.3% 3BB counterpart is presented.
机译:这封信报道了一种创新的前格栅设计,该设计能够:1)减少金属阴影; 2)增加短路电流(); 3)增加开路电压(); 4)保持填充因子; 5)提高工业Al背面电场(Al-BSF)太阳能电池的效率。由于该设计结合了四路和五路母线(4S-5BB),因此与传统的3BB(mg)相比,它使用的前银金属(mg)更少,因此在金属化中每个电池的成本从6.07降低到3.426¢,而无需额外费用处理步骤。 4S-5BB设计显示出巨大的潜力,可实现工业尺寸的Al-BSF硅太阳能电池效率> 20%。在这封信中,给出了4S-5BB工业Al-BSF电池的初步结果,其平均效率为19.66%,而3BB对应的平均效率为19.3%。

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