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Optoelectronic simulation and optimization of unconstrained four terminal amorphous silicon/crystalline silicon tandem solar cell

机译:无约束四端子非晶硅/晶体硅串联太阳能电池的光电模拟与优化

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摘要

Optoelectronic two dimensional technology computer aided design simulation of unconstrained four terminal hydrogenated amorphous silicon/crystalline silicon (a-Si:H/c-Si) tandem solar cells have been carried out. Tandem solar cell approach is one of the promising approaches to achieve high efficiency solar cell by reducing lattice thermalization loss, but needs extensive optimization as the efficiency depends on a number of parameters. The optoelectronic properties of various materials involved have been taken into consideration and a range of parameters such as top anti reflection coating (ARC) thickness, bottom ARC thickness, a-Si:H solar cell thickness, optical connecting layer thickness, a-Si:H solar cell doping, crystalline silicon solar cells doping etc. have been optimized. The optimization resulted in a simulated efficiency of 19.29 % for an untextured planar solar cell.
机译:已经进行了无约束的四端氢化非晶硅/晶体硅(a-Si:H / c-Si)串联太阳能电池的光电二维技术计算机辅助设计仿真。串联太阳能电池方法是通过减少晶格热损失来实现高效太阳能电池的有前途的方法之一,但由于效率取决于许多参数,因此需要进行广泛的优化。已考虑到各种材料的光电性能,并考虑了一系列参数,例如顶部抗反射涂层(ARC)厚度,底部ARC厚度,a-Si:H太阳能电池厚度,光学连接层厚度,a-Si: H太阳能电池掺杂,晶体硅太阳能电池掺杂等已被优化。优化后,无纹理平面太阳能电池的模拟效率为19.29%。

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