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Thermodynamic Efficiency Limit of Bifacial Solar Cells for Various Spectral Albedos

机译:不同光谱反照率的双面太阳能电池热力学效率极限

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We have adapted the Shockley-Queisser radiative flux balance model to investigate the influence of the spectral dependent albedo on the power conversion efficiency of bifacial solar cells. By taking the spectral albedo of the surroundings into account the optimal band gap becomes dependent on the type of ground-reflecting surface. Furthermore, we find that the maximum efficiency depends on the spectral albedo of the surroundings and that optimal cell performance cannot be assessed when only accounting for a spectrally-independent albedo. We predict that the power conversion efficiency for a bifacial silicon solar cell surrounded by green grass is an absolute 0.90% higher than expected from a wavelength independent albedo, and even 1.51% higher for white sand, with the spectral albedo model. Furthermore, we calculated spectral properties of antireflection coatings and we found that commonly used antireflection coatings in silicon solar cells provide good properties in order to accept back-scattered light from surfaces with different spectral albedos.
机译:我们采用了Shockley-Queisser辐射通量平衡模型,以研究光谱依赖性反照率对双面太阳能电池功率转换效率的影响。通过考虑周围的光谱反照率,最佳带隙变得取决于地面反射表面的类型。此外,我们发现最大效率取决于周围的光谱反照率,而仅考虑光谱独立的反照率时,无法评估最佳电池性能。我们预测,采用光谱反射率模型,被绿草围绕的双面硅太阳能电池的功率转换效率比波长独立反射率的绝对值高0.90%,对于白沙甚至更高1.51%。此外,我们计算了减反射涂层的光谱特性,我们发现硅太阳能电池中常用的减反射涂层具有良好的性能,以便接受来自具有不同光谱反照率的表面的反向散射光。

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