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Crack detection in photovoltaic cells by interferometric analysis of electronic speckle patterns

机译:通过电子散斑图案的干涉分析来检测光伏电池中的裂纹

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摘要

Cracking is a common problem encountered during the fabrication of crystalline silicon photovoltaic (PV) cells. In this study, electronic speckle pattern interferometry (ESPI) is developed as a tool for rapid identification of cracks in PV cells. Thermally induced cell deformation of defect-free and defect-bearing PV cells was first modeled with numerical simulations and then experimentally studied by optical configuration for ESPI measurement of out-of-plane deformations. Both numerical and experimental results indicate that the speckle patterns imparted during thermal deformation of a cell allow for simultaneous quantification of crack size, location and type in both single- and poly-crystalline PV cells. Speckle patterns near defects were manifested as continuous, chevron-shaped, and broken fringes for scratch, surface cracks, and through cracks, respectively. For comparison to other existing techniques, full field electroluminescent images were also provided for every defective PV cell. Electroluminescent imaging is capable of detecting cracks, but unlike ESPI, is unable to distinguish between the different types of cracks. Because the amount of heating needed to induce out-of-plane deformation resolvable by ESPI is small (<0.5°C) and because ESPI is sensitive to crack type, the ESPI-based imaging study presented here can potentially be developed into a rapid, non-destructive inspection tool for the structural integrity of solar cells at any point within the manufacturing process.
机译:裂纹是在晶体硅光伏(PV)电池制造过程中遇到的常见问题。在这项研究中,电子散斑图案干涉术(ESPI)被开发为一种快速识别PV电池裂缝的工具。首先通过数值模拟对无缺陷和带有缺陷的PV电池的热诱导电池变形进行建模,然后通过光学配置对ESPI测量面外变形进行实验研究。数值和实验结果均表明,在电池热变形过程中产生的斑点图案允许同时定量单晶和多晶PV电池的裂纹尺寸,位置和类型。缺陷附近的斑点图案分别表现为连续的,人字形的和断裂的条纹,分别用于刮擦,表面裂纹和穿透裂纹。为了与其他现有技术进行比较,还为每个有缺陷的PV电池提供了全场电致发光图像。电致发光成像能够检测裂纹,但与ESPI不同,它无法区分不同类型的裂纹。由于引发ESPI可解决的面外变形所需的热量很小(<0.5°C),并且由于ESPI对裂纹类型敏感,因此此处介绍的基于ESPI的成像研究有可能发展为快速,用于在制造过程中任何时候进行太阳能电池结构完整性的非破坏性检查工具。

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