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Design and Simulation of Proposed Low Cost Solar Cell Structures Based on Heavily Doped Silicon Wafers

机译:基于严重掺杂硅晶片的提出的低成本太阳能电池结构的设计与仿真

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This paper aims to present the design and simulation of two proposed low cost solar cell structures; namely, pn and npn. Both structures are based on commercially available low cost heavily doped silicon wafers. Their operation relies on the idea of vertical generation and lateral collection of the light generated carriers. A detailed qualitative analysis of both structures is given and verified using advanced TCAD tools. The comparison is analyzed firstly regarding the illuminated IV characteristics. The open circuit voltage (V_(oc)), short circuit current density (J_(SC)), fill factor (F.F) and conversion efficiency (η_C) are calculated. Additionally, the optical performance is calculated and compared for both structures. The quantum efficiency, the spectral response and the absorption curve are compared. The presented results show that npn structure gives better electrical and optical performance than the pn one.
机译:本文旨在介绍两个提出的低成本太阳能电池结构的设计和仿真;即,pn和npn。这两个结构基于市售的低成本重掺杂硅晶片。他们的操作依赖于垂直产生和横向收集的光产生的载体的想法。使用高级TCAD工具给出并验证了对这两种结构的详细定性分析。首先对照明IV特征进行分析比较。计算开路电压(V_(OC)),短路电流密度(J_(SC)),填充因子(F.F)和转换效率(η_c)。另外,计算和比较两个结构的光学性能。比较量子效率,光谱响应和吸收曲线。所提出的结果表明,NPN结构提供比PN ON的更好的电气和光学性能。

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