Modeling of polycrystalline N+/P junction solar cell with columnar cylindrical grain

A. Trabelsi, A. Zouari, Adel Ben Arab
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Abstract

Analytical expressions for short-circuit and dark current densities are derived for a polycrystalline N+/P junction solar cell. A new solution of the continuity equation for the minority carrier which is adaptable with the boundary conditions when the cell is either illuminated or in the obscurity is given. For the first time, a three-dimensional model is developed for a polysilicon solar cell with multi-cylindrical grains. For an elementary solar cell, the results show that the three types of recombination such as the bulk recombination, the surface recombination and the recombination at the grain boundaries have an important effect on the cell parameters; and in some cases, one of these forms of recombination dominates the others. In the case of multi-cylindrical grains, the results of our approach show a decrease of the photovoltaic parameters according to the grain number especially for a thick solar cell. In addition, the comparison between an elementary cylindrical grain solar cell and an elementary cubic grain one shows an enhancement of the photovoltaic parameters for the cylindrical model.
柱状圆柱形晶粒多晶 N+/P 结太阳能电池建模
推导出了多晶 N+/P 结太阳能电池的短路和暗电流密度的分析表达式。给出了少数载流子连续性方程的新解法,该解法与电池受光照或处于暗处时的边界条件相适应。首次为具有多圆柱形晶粒的多晶硅太阳能电池建立了三维模型。对于基本太阳能电池,研究结果表明,三种类型的重组(如体重组、表面重组和晶界重组)对电池参数有重要影响;在某些情况下,其中一种重组形式主导其他重组形式。在多圆柱形晶粒的情况下,我们的研究结果表明,随着晶粒数的增加,光伏参数会降低,特别是对于厚太阳能电池。此外,基本圆柱形晶粒太阳能电池与基本立方晶粒太阳能电池的比较显示,圆柱形模型的光伏参数有所提高。
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CiteScore
0.40
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