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Analysis of the impact of geometrical and technological parameters on recombination losses in interdigitated back-contact solar cells

机译:几何和工艺参数对叉指式背接触太阳能电池复合损失的影响分析

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摘要

This paper presents a detailed analysis of the recombination losses in an interdigitated back-contact (IBC) solar cell by means of three-dimensional numerical simulation. In particular, we discuss about the influence of geometrical and technological parameters such as the bulk thickness, the emitter contact fraction and the passivation effectiveness of the gap region on the saturation current density and on the carrier collection efficiency at region and mechanism-wise level. Moreover, the simulation results in terms of main figures of merit of the solar cell are reported and discussed. The paper shows that, except for the parasitic resistive losses, the optimum contact fraction at the emitter and base strongly depends on the presence of physical competing mechanisms, such as the internal optical bottom reflectivity and the recombination losses at the passivated emitter and base. In addition, the study underlines the critical role played by the passivation properties of the gap region, which may potentially be detrimental in terms of Fill-Factor and conversion efficiency. (c) 2015 Elsevier Ltd. All rights reserved.
机译:本文通过三维数值模拟对指叉背接触式(IBC)太阳能电池的复合损失进行了详细分析。特别是,我们讨论了几何和技术参数(例如,体厚度,发射极接触分数和间隙区域的钝化效果)对饱和电流密度以及区域和机制水平上载流子收集效率的影响。此外,报告并讨论了根据太阳能电池的主要性能指标的仿真结果。该论文表明,除了寄生电阻损耗外,发射极和基极的最佳接触分数在很大程度上取决于物理竞争机制的存在,例如内部光学底部反射率以及钝化发射极和基极的复合损耗。此外,该研究强调了间隙区域的钝化特性所起的关键作用,这对于填充因子和转化效率可能是有害的。 (c)2015 Elsevier Ltd.保留所有权利。

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