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Progress in co-plating contacts for bifacial cells designed for multi-wire interconnection

机译:用于多线互连设计的双脉冲细胞的共同电池的进展

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For many applications, bifacial modules offer a cost-effective way of increasing energy yields, which explains why the interest in bifacial cells in the PV industry is steadily growing and is expected to continue. However, the metallization of bifacial cells creates new challenges, as the same materials and techniques developed for n surfaces are generally not directly, or simultaneously, applicable to p surfaces; this necessitates sequential metallization of each side, resulting in added cost and/or complexity. This paper introduces a simple co-plating approach with the objective of simplifying the metallization of bifacial cells in a cost-effective way, and which is designed for multi-wire module integration. The metallization route is described, and high cell efficiencies of up to 22.4% are demonstrated using this co-plating approach with bifacial nPERT+ cells (where '+' signifies the bifacial nature of these cells). Initial thermal-cycling reliability data of test structures and 1-cell laminates is presented. Finally, cost-of-ownership (COO) estimates are given, which predict the co-plating approach to be ~40% cheaper than bifacial screen-printed metallization. It is shown that the combination of the high efficiency potential of nPERT+ cells and the reduced costs of co-plating has the potential to deliver module-level costs of ~$0.25/Wpe (glass-glass configuration).
机译:对于许多应用,双翼体模块提供了提高能源产量的经济有效的方式,这解释了为什么PV工业中双脉肤细胞的兴趣稳步增长,预计将继续。然而,双接种细胞的金属化产生了新的挑战,因为对于N个表面的相同材料和技术通常不是直接或同时,适用于P表面;这需要每一侧的连续金属化,导致增加成本和/或复杂性。本文介绍了一种简单的共同电镀方法,目的是以经济高效的方式简化双层细胞的金属化,并且设计用于多线模块集成。描述了金属化途径,使用这种冰腹部+细胞(其中'+'表示这些细胞的双环性质)来证明高达22.4%的高细胞效率。提出了测试结构和1个单元层压板的初始热循环可靠性数据。最后,给出了所有权(COO)估计,这预测了比双脉络印刷金属化便宜〜40%的共镀方法。结果表明,NPERT +电池的高效率电位的组合和共同电镀的降低的成本具有促进〜0.25 / WPE(玻璃玻璃配置)的模块级成本。

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