Architecture of symmetrical bifacial perovskite/Si/perovskite PV modules and LCOE comparison in bifacial applications

IF 1.9 Q3 PHYSICS, APPLIED EPJ Photovoltaics Pub Date : 2023-01-01 DOI:10.1051/epjpv/2023025
Amaury Martin, Pierre-Philippe Grand, Matthew Hull, Jean Rousset, Lars Oberbeck
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Abstract

Perovskite on silicon tandem technologies offer a promising way to overcome the efficiency limit of single-junction crystalline silicon modules and are therefore widely studied. Besides the cost reduction potential of using tandem modules in utility-scale PV plants, the application of bifacial PV modules offers additional opportunities to reduce costs by increasing the energy yield. However, the bifaciality factor of tandem PV modules using bifacial crystalline silicon solar cells is typically lower than that of single-junction bifacial modules, considering the asymmetric architecture of the module with higher front-side than rear-side efficiency. In this study, we assess a symmetrical bifacial triple-junction perovskite/silicon/perovskite PV module architecture which allows for a significant improvement of the PV module rear side efficiency. Cost of ownership, energy yield and levelized cost of energy modeling show the superior performance of such modules compared to crystalline silicon and perovskite/silicon tandem modules specifically in vertical mounting applications that are used e.g.in AgriPV or noise protection PV walls on highways.
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对称双面钙钛矿/硅/钙钛矿光伏组件的结构及双面应用中的LCOE比较
钙钛矿在硅上的串联技术为克服单结晶体硅组件的效率限制提供了一条有希望的途径,因此得到了广泛的研究。除了在公用事业规模的光伏电站中使用串联模块降低成本的潜力之外,双面光伏模块的应用还提供了通过增加能源产量来降低成本的额外机会。然而,采用双面晶硅太阳能电池的串联光伏组件的双面性系数通常低于单结双面组件,考虑到组件的不对称结构,前部效率高于后部效率。在本研究中,我们评估了一种对称的双面三结钙钛矿/硅/钙钛矿光伏组件架构,该架构可以显著提高光伏组件的后侧效率。与晶体硅和钙钛矿/硅串联模块相比,拥有成本、能源产量和能源建模的平均化成本显示出这些模块的优越性能,特别是在垂直安装应用中,例如在AgriPV或高速公路上的隔音光伏墙中使用。
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来源期刊
EPJ Photovoltaics
EPJ Photovoltaics PHYSICS, APPLIED-
CiteScore
2.30
自引率
4.00%
发文量
15
审稿时长
8 weeks
期刊最新文献
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