提高太阳能电池的效率:纹理化与背接触发射体-包裹穿透模型的融合

A. H. M. Ripon, A. A. Siddique, S. M. Mustafa, A. B. M. Rafi Sazzad
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引用次数: 1

摘要

太阳能电池作为一种绿色可再生能源,具有巨大的发展潜力。然而,伴随着光反射损耗、复合损耗、栅格遮蔽损耗、载流子浓度低等损耗,太阳能电池的能量转换效率仍然不能令人满意。为了提高太阳能电池的效率,人们已经做了大量的研究工作,而且还在继续进行。其中,表面纹理化非常成功地通过在电池中捕获光来降低反射率,从而提高光吸收率。此外,发射器-包裹式后接触电池技术为减少电网损耗和双面载流子收集铺平了道路,从而增加了短路电流。然而,目前主要采用的是纹理化技术和发射器包裹穿透(EWT)技术。在本文中,我们通过结合这两个特性以及PC1D软件模拟来提高太阳能电池的效率,从而提出了一种可能的太阳能电池设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficiency enhancement of solar cell: Fusion of texturisation and back contact Emitter-Wrap-Through modeling
Solar cell has an enormous developing capacity as kind of green renewable energy source. Nevertheless, accompanied by some losses such as light reflection loss, recombination loss, grid shadowing loss, and low carrier concentration, the energy conversion efficiency of a solar cell remains unsatisfactory. A lot of research work has been done and yet been continued in order to enhance the solar cell efficiency. Among them, surface texturisation is quite enough succeeded in reduction of reflectance through light trapping in the cell and thence higher light absorption. Again, Emitter-Wrap-Through back contact cell technology paves the way to reduce grid loss as well as double-sided carrier collection and therefore increases short circuit current. However, at present, Texturization and Emitter-Wrap-Through (EWT) technology are used individually. In this paper we promote a possible solar cell design by combining these two features along with a PC1D software simulation to enhance the efficiency of solar cell.
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