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Energy yield of bifacial textured perovskite/silicon tandem photovoltaic modules

机译:双因素纹理钙钛矿/硅串联光伏模块的能量产量

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摘要

Bifacial perovskite/crystalline silicon (c-Si) tandem photovoltaic (PV) modules that harvest albedo radiation are a promising strategy to further enhance the energy yield (EY) of monofacial perovskite/c-Si tandem PV modules. Given the required current matching in bifacial perovskite/c-Si two-terminal (2T) tandem PV modules, predicting the expected enhancement in EY requires an advanced EY modelling framework. In this study, the architecture, module tilt, perovskite absorber layer thickness, and bandgap of the perovskite top solar cell are optimized for several types of grounds and two locations. Compared to bifacial c-Si single junction PV modules, the relative enhancement in EY of textured bifacial perovskite/c-Si 2T tandem PV modules is around 24-38% for an exemplary grass ground (mean albedo = 35%). With increasing albedo, the optimum bandgap of the perovskite top solar cell decreases from 1.72 eV (black ground, mean albedo = 0%) to 1.55 eV (snow, mean albedo = 88%). This is attributed to enhanced current generation only in the c-Si bottom solar cell due to albedo radiation, entering the solar cell at the rear side. In addition, minor optical losses due to ground shading are found for modules with a finite mounting height in the range of 1 m. Overall, our study highlights the importance of EY modelling to assess the performance of bifacial perovskite/c-Si tandem PV. It provides direction for the design of bifacial perovskite/c-Si tandem solar cells with regard to the device architecture and the choice of the perovskite material with regard to its bandgap.
机译:基团Perovskite /晶体硅(C-Si)串联光伏(PV)模块,其收获Albedo辐射是进一步增强单裂菌钙钛矿/ C-Si串联光伏模块的能量产率(EY)的有希望的策略。鉴于Bifacial Perovskite / C-Si双端(2T)串联光伏模块中所需的电流匹配,预测EY的预期增强需要先进的EY模拟框架。在本研究中,佩罗夫斯库茨顶太阳能电池的架构,模块倾斜,钙钛矿吸收层厚度和带隙对于几种类型的地面和两个位置进行了优化。与双脉冲C-Si单结PV模块相比,纹理化双环钙钛矿/ C-Si 2T串联光伏模块的相对增强约为示例性草地(平均Albedo = 35%)约为24-38%。随着Albedo的增加,Perovskite顶部太阳能电池的最佳带隙从1.72eV(黑色接地,意味着反照= 0%)降至1.55eV(雪,意味着Albedo = 88%)。这归因于由于反玻璃辐射而仅在C-Si底部太阳能电池中产生的增强电流,进入后侧的太阳能电池。此外,找到了由于接地阴影引起的微小光学损耗,用于有限的安装高度在1米的范围内的模块。总体而言,我们的研究突出了EY模型评估双脉冲钙钛矿/ C-Si串联光伏性能的重要性。它提供了关于设备架构的双因素Perovskite / C-Si串联太阳能电池的方向,以及关于其带隙的钙钛矿材料的选择。

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