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Electrical Performance Study of Colored c-Si Building-Integrated PV Modules

机译:彩色C-Si建筑集成光伏模块的电气性能研究

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摘要

Digital ceramic printing on glass is explored as a solution to "camouflage" crystalline silicon-based solar cells in order to improve the visual appearance of c-Si PV modules for building-integrated photovoltaics; however, printing on the front glass reduces the light transmittance and, thus, affects the module performance. By combining experiments and regression modeling, we quantify the effect of six different colors with varying print opacities on module electrical parameters under standard test conditions. Our experimental results reveal that print opacity and color have a significant detrimental impact on the module short-circuit current (I-sc) and maximum module power (P-mpp), but minimally affects the module open-circuit voltage (V-oc) and fill factor (FF). Taking black print with 100% opacity as an example, the monochromatic module shows 75% I-sc-loss, 74% P-mpp-loss, 6% V-oc-loss, and 5% FF-gain compared to a nonprinted glass. Furthermore, it is observed that at any given print opacity, black print results in the highest performance loss, whereas blue print shows the lowest loss. Our regression analysis shows that the effect of print opacity on module-I-sc is color dependent. The fitted regression models for the six colors under study are able to predict the I-sc-loss for any given opacity level with a root mean square error of less than 1%.
机译:玻璃上的数字陶瓷印刷作为“伪装”晶体硅基太阳能电池的解决方案,以改善C-Si PV模块的视觉外观,用于建筑集成光伏;但是,在前玻璃上打印降低了透光率,因此影响模块性能。通过组合实验和回归建模,我们在标准试验条件下量化六种不同颜色的六种不同颜色对模块电气参数的影响。我们的实验结果表明,打印透明度和颜色对模块短路电流(I-SC)和最大模块电源(P-MPP)具有显着的有害影响,但最小地影响模块开路电压(V-OC)并填充因子(FF)。以100%不透明度拍摄黑色印刷品作为一个例子,单色模块显示75%I-SC损失,74%P-MPP损失,6%V-OC损耗,与非印刷玻璃相比5%FF-GAIN 。此外,观察到,在任何给定的印刷不透明度下,黑色印刷导致最高性能损失,而蓝色打印显示最低损耗。我们的回归分析表明,打印不透明度对模块-I-sc的影响是颜色依赖性的。根据研究的六种颜色的拟合回归模型能够预测任何给定的不透明度水平的I-SC损耗,具有小于1%的根均线误差。

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