Ga content and thickness inhomogeneity effects on Cu(In, Ga)Se2 solar modules

被引:0
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作者
Xiaobo Zhu
Tzu-Huan Cheng
Chee Wee Liu
机构
[1] National Taiwan University,Department of Electrical Engineering and Graduate Institute of Electronics Engineering
[2] LiveStrong Optoelectronics Co.,Department of Electrical Engineering and Graduate Institute of Photonics and Optoelectronics
[3] Ltd.,Center for Condensed Matter Sciences, and Center for Emerging Material and Advanced Devices
[4] National Taiwan University,undefined
[5] National Taiwan University,undefined
来源
关键词
Cu(In,Ga)Se; solar module; residual strain effect; 3D simulation; Ga fluctuation; thickness fluctuation;
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摘要
The fluctuation of Ga content and absorption layer thickness of Cu(In, Ga)Se2 (CIGS) solar modules is investigated by 3-dimensional numerical simulation. The band gap of CIGS is increased by the increasing Ga content, and the residual compressive strain. Strain effect worsens the degradation of the power conversion efficiency of CIGS module in addition to Ga fluctuation. The intracell Ga fluctuation degrades the open circuit voltage due to the minimum open circuit voltage in the parallel configuration, and also affects the short circuit current due to the Ga-dependent light absorption. The intercell Ga fluctuation leads to a more significant degradation for CIGS solar module efficiency than the intracell Ga fluctuation due to the additional degradation of the fill factor. The thickness fluctuation has a small effect on open circuit voltage, but causes strong degradation of short circuit current and fill factor, which leads to a more significant degradation on power conversion efficiency than Ga fluctuation to the same fluctuation percentage. In reality, the thickness can be tightly controlled within the fluctuation of 5% or less.
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页码:506 / 511
页数:5
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