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Effect of negative potential on the extent of PID degradation in photovoltaic power plant in a real operation mode

机译:实际运行模式下负电势对光伏电站PID退化程度的影响

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This paper deals with Potential Induced Degradation (PID) of p-type monocrystalline PV modules (Evergreen) from a photovoltaic power plant that has been in operation mode for 7 years. Within the PV module affected by the PID degradation, the effect of the electric field on individual PV cells is studied. The distribution of the electric field was simulated by SolidWorks software. The results show a random distribution of affected PV cells not related to the size and distribution of the electric field intensity. Furthermore, the dependencies of negative voltage potential on the range of PID degradation of individual PV modules located in the negative pole of the PV string is made. From measured current voltage characteristics (measured at STC), it is evident that the value of negative voltage potential is not directly proportional to the PID occurrence. These results are supplemented by electroluminescence images which confirm this finding.
机译:本文研究了已经运行了7年的光伏电站的p型单晶光伏组件(Evergreen)的潜在诱导降解(PID)。在受PID退化影响的PV模块内,研究了电场对单个PV电池的影响。电场的分布通过SolidWorks软件进行模拟。结果显示受影响的光伏电池的随机分布与电场强度的大小和分布无关。此外,建立了负电压电势对位于PV串负极中的各个PV模块的PID降解范围的依赖性。从测量的当前电压特性(在STC处测量)可以看出,负电势的值与PID的发生并不直接成比例。这些结果由证实该发现的电致发光图像补充。

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