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首页> 外文期刊>Photovoltaics, IEEE Journal of >Detailed Current Loss Analysis for a PV Module Made With Textured Multicrystalline Silicon Wafer Solar Cells
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Detailed Current Loss Analysis for a PV Module Made With Textured Multicrystalline Silicon Wafer Solar Cells

机译:带有纹理化的多晶硅硅晶片太阳能电池的光伏组件的详细电流损耗分析

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摘要

We present a top-down method to quantify optical losses due to encapsulation of textured multicrystalline silicon wafer solar cells in a photovoltaic module. The approach is based on a combination of measurements and mathematical procedures. Seven different loss mechanisms are considered: 1) reflection at the glass front surface, 2) reflection at the metal fingers, 3) reflection at the textured solar cell surface, 4) absorption in the antireflection coating, 5) absorption in the glass pane and the encapsulation layer, 6) front surface escape, and 7) losses due to a non-perfect solar cell internal quantum efficiency. Losses for each of these mechanisms are obtained as a function of wavelength, and the corresponding current loss for each loss mechanism is calculated. Comparing simulated and measured results, the method predicts the module quantum efficiency with an error of less than 2% and the collected current with an error of less than 1%. In the presented example, the biggest loss (7.4 mA/cm$^{2}$) is due to the nonperfect quantum efficiency, followed by reflection losses at the glass front (2.2 mA/cm$^{2}$ ) and absorption in the glass and encapsulation layer (1.1 mA/cm $^{2}$).
机译:我们提出了一种自上而下的方法来量化由于光伏模块中的纹理化多晶硅晶片太阳能电池的封装而造成的光损耗。该方法基于测量和数学过程的组合。考虑了七种不同的损耗机制:1)在玻璃正面反射,2)在金属指状反射,3)在有纹理的太阳能电池表面反射,4)在抗反射涂层中吸收,5)在玻璃窗格中吸收以及封装层,6)前表面逸出和7)由于不完美的太阳能电池内部量子效率而造成的损耗。获得每种机制的损耗与波长的关系,并计算每种损耗机制的相应电流损耗。比较模拟结果和测量结果,该方法预测模块量子效率的误差小于2%,收集的电流误差小于1%。在给出的示例中,最大损耗(7.4 mA / cm $ ^ {2} $)是由于量子效率不理想所致,其次是玻璃前端的反射损耗(2.2 mA / cm $ ^ {2} $)和吸收在玻璃和封装层中的电阻(1.1mA / cm 2)。

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