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Analysis of annual bifacial gain in energy and annual energy yield of bifacial modules at low latitudes

机译:低纬度地区双后模块能源产量和年能产量分析

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Bifacial photovoltaic (PV) modules have the advantage of capturing sunlight from both their front and rear surfaces, which can generate more energy than monofacial PV modules. Quantifying the difference in annual energy production between monofacial and bifacial PV modules remains a great challenge. Research and theoretical modeling already exists that explores Bifacial Gain in Energy (BGE) and its dependency on minimum mounting height, tilt angle, and ground albedo. However, few studies have sought to investigate the bifacial PV module annual energy yield model at low latitudes (from 30 degrees S to 30 degrees N). This paper first establishes a relationship between annual BGE and latitude. This claim is then supported by comparing theoretical and experimental values from sites using bifacial PV in Shanghai and Tucson. Second, this research discusses the effect of diffuse irradiance and latitude on annual BGE by analyzing the BGE at 19 different sites all located at low latitudes between 30 degrees S and 30 degrees N. Finally, this research creates an annual BGE model for modules located at low latitudes. The results of this model are in agreement with data collected from research by other researchers. We believe that our model can provide meaningful guidance for designing bifacial module solar power stations.
机译:部分光伏(PV)模块具有从其前后表面捕获阳光的优点,这可以产生比单裂缝PV模块更多的能量。量化单缺陷和双层光伏模块之间的年度能源产生差异仍然是一个巨大的挑战。研究和理论建模已经存在,探讨了能量(BGE)的双相增益及其对最小安装高度,倾斜角度和地面的依赖性。然而,很少有研究要求在低纬度(30度S至30度N)下调查双因素PV模块年能产量模型。本文首先建立了年度BGE和纬度之间的关系。然后通过比较在上海和图森的双相PV从位点的理论和实验值进行支持,支持该权利要求。其次,本研究讨论了漫反射辐射和纬度对年度BGE的影响,通过分析了19个不同的网站,所有位于30摄氏度之间的低纬度的网站,这项研究会为位于的模块创建一年一度的BGE模型低纬度。该模型的结果与其他研究人员的研究收集的数据一致。我们认为,我们的模型可以为设计双面模块太阳能电站提供有意义的指导。

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