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Quantitative estimation of electrical performance parameters of individual solar cells in silicon photovoltaic modules using electroluminescence imaging

机译:使用电致发光成像定量评估硅光伏模块中单个太阳能电池的电性能参数

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摘要

An analysis routine, based on electroluminescence (EL) imaging is presented for the quantitative determination of electrical performance parameters of individual crystalline silicon solar cells within a photovoltaic (PV) module. Specifically, the series resistance and dark saturation current density of individual solar cells are extracted, providing an in-depth diagnosis of PV module performance. The current-voltage (I-V) characteristics of the PV module can then be computed through solar cell one-diode modelling. By comparing the performance of the original module with that of a simulated module, where the solar cells with poor series resistance and dark saturation current density, are replaced by better cells, the potential performance improvement can be predicted. The technique is simple and enables a fast analysis.
机译:提出了一种基于电致发光(EL)成像的分析程序,用于定量确定光伏(PV)模块中各个晶体硅太阳能电池的电性能参数。具体来说,可以提取单个太阳能电池的串联电阻和暗饱和电流密度,从而提供对PV组件性能的深入诊断。然后可以通过太阳能电池一二极管建模来计算PV模块的电流-电压(I-V)特性。通过将原始模块的性能与模拟模块的性能进行比较,可以用更好的电池代替串联电阻和暗饱和电流密度较弱的太阳能电池,从而可以预测潜在的性能改善。该技术很简单,可以进行快速分析。

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