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4-TERMINAL AND 2-TERMINAL TANDEM MODULES IN BIFACIAL OPERATION: MODEL ANALYSIS AND COMPARISON

机译:双齿轮操作中的4端子和2端子串联模块:模型分析和比较

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This paper models and compares the energy yield to be expected from bifacial 2-terminal (2T) and 4-terminal (4T) hybrid perovskite/crystalline silicon tandem modules. Following the work by Asadpour et al. the comparison includes 2T tandem cells employing a thick perovskite absorber layer with standard band gap, which in monofacial operation have significant mismatch of short circuit currents of top and bottom cell, and therefore low efficiency. The perovskite stack properties are taken from the current Solliance high-performance semi-transparent perovskite cells, and the c-Si model represents current high-efficiency industrial nPERT cells. As shown by Asadpour et al., the combination of thick absorber and standard band gap with bifacial operation is a promising approach for 2T bfiacial tandem modules, resulting in higher performance than the c-Si bottom cells. We find that such a 2T bifacial tandem module should be able to outperform even an optimized 2T module with wide band gap perovskite. Additionally, employing a planar c-Si front side in combination with textured module glass can potentially perform nearly as well as employing a textured c-Si front side. These results support the feasibility of important simplifications for production of 2T tandem modules, as long as these will be operated bifacially. The dependence of energy yield of 2T bifacial tandems on albedo is qualitatively different from that of 4T and single junction c-Si bifacial modules. This reduces the competitiveness of 2T bifacial tandems, compared to 4T and SJ c-Si, with increase of the albedo of the environment.
机译:本文模型和比较了双弧2末端(2T)和4端子(4T)杂交钙钛矿/晶体硅串联模块的预期能源产量。 asadpour等人的工作之后。比较包括使用具有标准带隙的厚钙钛矿吸收层的2T串联电池,其在单裂缝中具有显着的顶部和底部电池的短路电流不匹配,因此低效率。钙钛矿堆栈属性取自当前Solliance高性能半透明钙钛矿细胞,C-Si模型代表了当前的高效工业NPERT细胞。如Asadpour等,厚吸收器和标准带隙的组合具有双接种操作,是2T Bfiacal串联模块的有希望的方法,导致比C-Si底部细胞更高的性能。我们发现,这种2T双相串联模块应该能够优于具有宽带隙PEROVSKITE的优化2T模块。另外,与纹理的模块玻璃结合使用平面C-Si前侧可能几乎可以执行纹理的C-Si前侧。这些结果支持对2T串联模块的生产重要简化的可行性,只要这些都将自由地操作。 2T双环串联对Albedo的能量产率的依赖性与4T和单结C-Si双面模块的定性不同。与4T和SJ C-Si相比,这减少了2T双曲串联串联的竞争力,随着4T和SJ C-Si的增加。

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