Accelerated Stress Testing of Terrestrial Solar Cells

J. Prince, J. Lathrop, F. W. Morgan, E. Royal, G. Witter
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引用次数: 6

Abstract

The results of a program to investigate the reliability characteristics of unencapsulated low-cost terrestrial solar cells using accelerated stress testing are presented. Four types of cells were investigated. Reliability (or parametric degradation) factors appropriate to the cell technologies and use conditions were studied and a schedule of accelerated stress tests was synthesized. An electrical measurement procedure capable of distinguishing small chanes in cell electrical parameters was established. A data analysis and management system was derived, and stress test fixturing and material flow procedures were set up after consideration was given to the number of cells to be stress tested and measured and the nature of the information to be obtained from the process. Based on both electrical parameters and metalization adherence strength, significant degradation was shown by some cell types in some stress tests. Other combinations of cell types and stress tests resulted in no detectable cell degradation. Analysis of the origins of the differences in degradation is continuing.
地面太阳能电池加速应力测试
介绍了一种利用加速应力试验研究非封装低成本地面太阳能电池可靠性特性的程序的结果。研究了四种类型的细胞。研究了适合电池技术和使用条件的可靠性(或参数退化)因素,并合成了加速应力测试时间表。建立了一种能够识别电池电参数微小变化的电测量程序。在考虑到需要进行压力测试和测量的细胞数量以及从该过程中获得的信息的性质后,导出了数据分析和管理系统,并建立了压力测试夹具和物料流程序。基于电学参数和金属化粘附强度,在一些应力测试中,某些类型的电池显示出明显的降解。细胞类型和压力测试的其他组合没有导致可检测到的细胞降解。目前正在继续分析退化差异的根源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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