Preliminary Analysis of Solar Cell Interconnections Welding Parameters Using Design of Experiments for Future Optimization

IF 0.9 Q3 ENGINEERING, AEROSPACE Journal of Aerospace Technology and Management Pub Date : 2020-11-21 DOI:10.5028/jatm.cab.1151
Graziela Fernanda de Souza Maia, Marcelo L. O. Souza, Alírio Cavalcanti de Brito
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引用次数: 1

Abstract

One of the processes that determine the reliability of solar panels used in space applications is the welding of interconnections between two adjacent solar cells. This process has various technologies, sequences and activities that have various characteristics, factors and parameters. Their combinations and values allow countless possibilities, making their adjustments time consuming, costly and exhausting. One way of abbreviating this, achieving competitiveness and meeting the needs of stakeholders is through the Analysis and Design of Experiments. This technique helps in optimizing the best adjustments to obtain the expected results. Thus, this paper presents a preliminary analysis of the parameters and their interactions of the welding process (by parallel-gap resistance welding) of interconnections between solar cells using design of experiments. In this welding process, the cell undergoes a certain level of degradation. For this reason, it is important to determine which process parameters are important and their proper levels, without big cell degradation. The result of this analysis can be used in the future to optimize the welding process meeting the design requirements for reliability and performance.
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基于实验设计的太阳能电池互连焊接参数初步分析
决定空间应用中使用的太阳能电池板可靠性的过程之一是焊接两个相邻太阳能电池之间的互连。这一过程具有各种技术、序列和活动,具有各种特征、因素和参数。它们的组合和价值观允许无数的可能性,使它们的调整耗时、昂贵且令人疲惫。简化这一点、实现竞争力和满足利益相关者需求的一种方法是通过实验的分析和设计。该技术有助于优化最佳调整,以获得预期结果。因此,本文使用实验设计对太阳能电池之间互连的焊接过程(通过平行间隙电阻焊)的参数及其相互作用进行了初步分析。在这种焊接过程中,电池会经历一定程度的退化。因此,在没有大细胞降解的情况下,确定哪些工艺参数是重要的及其适当的水平是很重要的。该分析结果可用于未来优化焊接工艺,以满足可靠性和性能的设计要求。
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来源期刊
CiteScore
2.00
自引率
0.00%
发文量
16
审稿时长
20 weeks
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