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Modeling of Four-terminal Solar Photovoltaic Systems For Field Application

机译:用于现场应用的四端子太阳能光伏系统建模

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In this article a theoretical framework for mechanically stacked four-terminal solar photovoltaic (FTSPV) system has been proposed. In a mechanical stack arrangement, a semitransparent CdTe panel has been used as a top sub-module, whereas a μc-Si solar panel has been used as bottom sub-module. Theoretical modeling has been done to analyze the physical processes in the system and to estimate reliable prediction of the performance. To incorporate the effect of material, the band gap and the absorption coefficient data for CdTe and μc-Si panels have been considered. The electrical performance of the top and bottom panels operated in a mechanical stack has been obtained experimentally for various inter-panel separations in the range of 0-3 cm. Maximum output power density has been obtained for a separation of 0.75 cm. The mean value of output power density from CdTe (top panel) has been calculated as 32.3 Wm~(-2) and the mean value of output power density from μc-Si, the bottom panel of four-terminal photovoltaic system has been calculated as ~3.5 Wm~(-2). Results reported in this study reveal the potential of mechanically stacked four-terminal tandem solar photovoltaic system towards an energy-efficient configuration.
机译:在本文中,提出了机械堆叠的四端子太阳能光伏(FTSPV)系统的理论框架。在机械堆叠装置中,半透明CDTE板已被用作顶部子模块,而μC-Si太阳能电池板已被用作底部子模块。已经完成理论建模以分析系统中的物理过程,并估计对性能的可靠预测。为了纳入材料的影响,已经考虑了CDTE和μC-Si面板的带隙和吸收系数数据。在机械堆叠中操作的顶部和底板的电性能已经通过实验在0-3cm的范围内进行各种面板间隔。已经获得了0.75厘米的分离的最大输出功率密度。从CDTE(顶面板)的输出功率密度的平均值已经计算为32.3Wm〜(-2),并且从μC-Si的输出功率密度的平均值,四端子光伏系统的底板已经计算为〜3.5 WM〜(-2)。该研究报告的结果揭示了机械堆叠的四端子串联太阳能光伏系统朝向节能配置的潜力。

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