基于金属带状连接的电阻分析及其在光伏板串互连中的应用。

WonJe Oh, JiSu Park, Minsoo Kwon, Jaehyeong Lee, EungKwon Kim, Yongseob Park, Chaehwan Jeong
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引用次数: 1

摘要

瓦式光伏(PV)组件是一种新型的高功率光伏组件技术,采用太阳能电池的“分割和ECA(电导率粘合剂)粘合”方法制造。对于一般的光伏组件,在太阳能电池的母线上焊接一条金属带并与其他金属带连接。分裂/ECA键合技术通过键合将分裂的单元连接起来,形成管柱。为了制作一个模块,制作的串必须与母线带连接。采用分接法生产的Shingled串不限于通过金属带进行互连的方法。此外,对于字符串之间的互连,它也没有标准化。因此,我们根据焊接方法分析了拼接串的特性。串的特性取决于与太阳能电池电极接触的金属带的数量。实验结果表明,随着接触次数的减少,串联电阻显著增加。结果表明,两点接触效率下降0.458%,四点接触效率下降0.048%,八点接触效率下降0.034%。这是因为随着触点数量的增加,母线的电阻变小,接触电阻变小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Resistance According to Metal Ribbon Connection for Application to Interconnection of Shingled Photovoltaic Strings.

The Shingle Photovoltaic (PV) module is a new high power PV module technology manufactured by 'Dividing and ECA (Electrical Conductivity Adhesive) bonding' method for solar cell. In the case of a general PV module, a metal ribbon is soldered on the bus bar of the solar cell and connected to others. The dividing/ECA bonding technology connects the divided cells through bonding to manufacture a string. In order to make a module, the fabricated strings must be connected with Bus ribbon. The Shingled strings produced by the dividing and bonding method are not limited to the interconnection method by the metal ribbon. Also, it is not standardized for interconnections between strings. Therefore, we analyzed the characteristics of the shingled strings according to the soldering method. The characteristics of the string vary depending on the number of metal ribbons that contact the solar cell electrodes. Experimental results show that the series resistance increases significantly with fewer contacts. As a result, the efficiency of two-point contact decreased by 0.458%, four-point contact decreased by 0.048%, and eight-point contact decreased by 0.034%. This is because as the number of contacts increases, the resistance of the busbars becomes smaller and the contact resistance becomes smaller.

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来源期刊
Journal of nanoscience and nanotechnology
Journal of nanoscience and nanotechnology 工程技术-材料科学:综合
自引率
0.00%
发文量
0
审稿时长
3.6 months
期刊介绍: JNN is a multidisciplinary peer-reviewed journal covering fundamental and applied research in all disciplines of science, engineering and medicine. JNN publishes all aspects of nanoscale science and technology dealing with materials synthesis, processing, nanofabrication, nanoprobes, spectroscopy, properties, biological systems, nanostructures, theory and computation, nanoelectronics, nano-optics, nano-mechanics, nanodevices, nanobiotechnology, nanomedicine, nanotoxicology.
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