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Detection of the voltage distribution in photovoltaic modules by electroluminescence imaging

机译:通过电致发光成像检测光伏模块中的电压分布

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摘要

We introduce an approach to determine the operating voltage of individual solar cells in photovoltaic (PV) modules by electroluminescence (EL) imaging. The highest EL signal of each solar cell is proportional to its operating voltage. Moreover the sum of all operating voltages equals the externally applied module voltage. Thus the operating voltage of individual solar cells is determined from the measured EL signal. The reliability of this relation is verified by measurements on specially prepared PV modules allowing us to measure the individual operating cell voltage. The experimentally measured cell voltages are deduced with an uncertainty of +-1 percent from an EL image. Moreover, the operating cell voltages determined from the EL image are used to calculate the module series resistance. Comparing experimentally determined values from the operating cell voltage and the total current flowing supplied to the module with calculated module series resistances using tabulated material and typical solar cell parameters, a very good correspondence is found.
机译:我们介绍一种通过电致发光(EL)成像确定光伏(PV)模块中单个太阳能电池的工作电压的方法。每个太阳能电池的最高EL信号与其工作电压成正比。此外,所有工作电压的总和等于外部施加的模块电压。因此,根据测得的EL信号确定各个太阳能电池的工作电压。这种关系的可靠性通过对特别准备的光伏模块的测量来验证,从而使我们能够测量单个工作电池的电压。从EL图像推导出实验测量的电池电压,不确定度为+ -1%。此外,从EL图像确定的工作单元电压用于计算模块串联电阻。使用表格材料和典型的太阳能电池参数,将工作电池电压和提供给模块的总电流的实验确定值与计算出的模块串联电阻进行比较,可以找到非常好的对应关系。

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