首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Optimization of the CIGS based thin film solar cells: Numerical simulation and analysis
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Optimization of the CIGS based thin film solar cells: Numerical simulation and analysis

机译:基于CIGS的薄膜太阳能电池的优化:数值模拟和分析

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摘要

Chalcopyrite Cu(In,Ga)Se (CIGS) is a very promising material for thin film photovoltaics and offers a number of interesting advantages compared to the bulk silicon devices. CIGS absorbers today have a typical thickness of about 1-2 μm. However, on the way toward mass production, it will be necessary to reduce the thickness even further. This paper indicates a numerical study to optimization of CIGS based thin film solar cells. An optimum value of the thickness of this structure has been calculated and it is shown that by optimizing the thickness of the cell efficiency has been increases and cost of production can be reduces. Numerical optimizations have been done by adjusting parameters such as the combination of band gap and mismatch as well as the specific structure of the cell. It is shown that by optimization of the considered structure, open circuit voltage increases and an improvement of conversion efficiency has been observed in comparison to the conventional CIGS system. Capacitance-voltage characteristics and depletion region width versus applied voltage for optimized cell and typical cell has been calculated which simulation results predict that by reducing cell layers in the optimized cell structure, there is no drastically changes in depletion layer profile versus applied voltage. From the simulation results it was found that by optimization of the considered structure, optimized value of CIGS and transparent conductive oxide thickness are 0.3 μm and 20 nm and also an improvement of conversion efficiency has been observed in comparison to the conventional CIGS which cell efficiency increases from 17.65 % to 20.34%, respectively.
机译:黄铜矿Cu(In,Ga)Se(CIGS)是一种非常有前途的薄膜光伏材料,与块状硅器件相比,它具有许多有趣的优点。如今,CIGS吸收器的典型厚度约为1-2μm。然而,在走向批量生产的过程中,将需要进一步减小厚度。本文指出了优化基于CIGS的薄膜太阳能电池的数值研究。已经计算出该结构的厚度的最佳值,并且表明通过优化电池的厚度,可以提高效率,并且可以降低生产成本。通过调整参数(例如带隙和失配的组合以及单元的特定结构)进行了数值优化。结果表明,与传统的CIGS系统相比,通过优化所考虑的结构,可以提高开路电压,并观察到转换效率的提高。已经计算出优化电池和典型电池的电容电压特性和耗尽区宽度与施加电压的关系,仿真结果预测,通过减少优化电池结构中的电池层,耗尽层轮廓与施加电压不会发生剧烈变化。从仿真结果发现,通过优化考虑的结构,CIGS和透明导电氧化物厚度的优化值为0.3μm和20 nm,并且与常规CIGS相比,其转换效率得到了改善,而传统CIGS的电池效率有所提高分别从17.65%到20.34%。

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