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Effects of Temperature and Spectral Irradiance on Performance of Silicon-Based Thin Film Multijunction Solar Cells

机译:温度和光谱辐照度对硅基薄膜多结太阳能电池性能的影响

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摘要

A numerical study using Analysis of Microelectronic and Photonic Structures (AMPS) device simulator has been carried out to examine how the operating temperature and spectral irradiance affect the behavior of a hydrogenated amorphous silicon/ hydrogenated microcrystalline silicon (a-Si:H/μc-Si:H) tandem cell. We have proposed a new tunnel-recombination junction (TRJ) model to calculate the characteristics of the tandem cell as a complete single device. We have shown that our new TRJ model is reliable and can be used for the simulation of the tandem cell. From the calculated results, we have observed that the performance of the tandem cell is sensitive to the spectral irradiance distribution. Furthermore, we have also observed that the current matching condition slightly affects the temperature coefficient of the tandem cell. We have considered that a top-limited cell has a lower temperature coefficient than the bottom-limited and current-matched cells.
机译:已经进行了使用微电子和光子结构分析(AMPS)设备模拟器的数值研究,以研究工作温度和光谱辐照度如何影响氢化非晶硅/氢化微晶硅(a-Si:H /μc-Si :H)串联细胞。我们已经提出了一种新的隧道重组结(TRJ)模型,以计算串联电池作为一个完整的单个设备的特性。我们已经表明,我们的新TRJ模型是可靠的,可用于串联电池的仿真。从计算结果,我们观察到串联电池的性能对光谱辐照度分布敏感。此外,我们还观察到当前的匹配条件会稍微影响串联电池的温度系数。我们已经考虑到,一个顶部受限制的电池的温度系数低于底部受限制的电池和电流匹配的电池的温度系数。

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