• DocumentCode
    35161
  • Title

    Crack Statistic for Wafer-Based Silicon Solar Cell Modules in the Field Measured by UV Fluorescence

  • Author

    Kontges, Marc ; Kajari-Schroder, Sarah ; Kunze, I.

  • Author_Institution
    Inst. for Solar Energy Res. Hamelin, Emmerthal, Germany
  • Volume
    3
  • Issue
    1
  • fYear
    2013
  • fDate
    Jan. 2013
  • Firstpage
    95
  • Lastpage
    101
  • Abstract
    We use the fluorescence effect of the lamination material of photovoltaic (PV) modules to detect cracks in wafer-based solar cells in a power plant. For this purpose, the PV modules are irradiated by ultraviolet (UV) light, and the fluorescence light is measured by a camera. The measurement is realized in the dark. This new application of the fluorescence method allows new insight into cracks of a huge amount of PV modules during service life without remounting or touching the PV modules. We found that the frequency distribution of so-called cross cracks is almost homogenous in the PV modules. These cracks are frequently induced by crumbs or needle-shaped production equipment and not introduced after production. We show that the measured distribution of “cross cracks” in the PV modules fits to the binominal frequency distribution, as expected for production-induced cell failures. The measured crack frequency distribution for other crack types is compared with a finite-element simulation of a simplified PV module. We find that the lateral crack distribution correlates with the simulated strain distribution induced by module vibrations. In total, we found that 4.1% of the solar cells in the PV modules show at least one crack.
  • Keywords
    crack detection; elemental semiconductors; fluorescence; semiconductor device measurement; silicon; solar cells; vibrations; Si; UV fluorescence; binominal frequency distribution; crack frequency distribution; crack statistic; cross crack distribution; cross cracks; fluorescence effect; fluorescence light; fluorescence method; lamination material; lateral crack distribution; module vibrations; needle-shaped production equipment; photovoltaic modules; power plant; production-induced cell failures; service life; strain distribution; ultraviolet light; wafer-based silicon solar cell modules; Histograms; Noise; Photovoltaic cells; Photovoltaic systems; Production; Silicon; Strain; Fluorescence (FL); microcrack; photovoltaic (PV) module; strain;
  • fLanguage
    English
  • Journal_Title
    Photovoltaics, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    2156-3381
  • Type

    jour

  • DOI
    10.1109/JPHOTOV.2012.2208941
  • Filename
    6286977