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Electrical characterization method for bifacial photovoltaic modules

机译:双面光伏组件的电学表征方法

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摘要

We present a method to characterize bifacial photovoltaic (PV) modules for simultaneous front and rear side illumination (i.e., bifacial illumination). The method uses standard monofacial (i.e., single-sided) indoor current-voltage measurements on the front and rear sides of the bifacial module, while covering the other side with a non-reflecting black cover. To define the performance under bifacial illumination, new bifacial parameters (short-circuit current, open-circuit voltage, fill factor and efficiency) are calculated using a one-diode model of the PV module. Assuming linear current response of PV modules for different illuminations, the method numerically simulates the performance of bifacial PV modules for various combinations of front and rear side irradiances. The method is useful in predicting the behavior of the bifacial PV module under bifacial illumination, without actually measuring the module under these conditions. Using a silicon wafer based bifacial PV module, we demonstrate experimentally that the method can predict the performance to within 1% variation with actual measurements.
机译:我们提出了一种方法来表征双面光伏(PV)模块同时进行前后照明(即双面照明)。该方法在双面模块的正面和背面使用标准的单面(即单面)室内电流-电压测量,同时用不反射的黑色覆盖物覆盖另一面。为了定义双面照明下的性能,使用PV模块的一二极管模型计算新的双面参数(短路电流,开路电压,填充系数和效率)。假设光伏组件在不同光照下的线性电流响应,该方法在数值上模拟了双面光伏组件在前后辐照度各种组合下的性能。该方法可用于预测在双面照明下的双面PV模块的行为,而无需在这些条件下实际测量模块。使用基于硅晶片的双面PV模块,我们通过实验证明了该方法可以预测性能与实际测量值相差1%以内。

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