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Techno-economic performance analysis of the smart solar photovoltaic blinds considering the photovoltaic panel type and the solar tracking method

机译:考虑光伏面板型及太阳能跟踪方法的智能太阳能光伏百叶窗的技术经济性能分析

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In urban areas with dense buildings, it is expected that the building-integrated photovoltaic (BIPV) system, will become widespread. Especially, the solar photovoltaic blinds (SPB), which can block the sunlight coming into the room and produce electricity, is emerging as a new technology trend. To facilitate the installation of the SPB, this study analyzed the techno-economic performance of the smart SPB considering the PV panel type and solar tracking method used. Towards this end, this study conducted experiments using the developed smart SPB, as well as a comparative analysis in terms of the techno-economic aspects based on the experiment results. The analysis results of this study were as follows: at the same cost, (i) the monocrystalline silicon (mono-Si) PV panel generated 350.5% more electricity than the amorphous silicon (a-Si) PV panel; and (ii) the direct solar tracking system generated 12.9% more electricity than the indirect solar tracking method. Accordingly, the mono-Si PV panel and the direct solar tracking method were selected for the optimal smart SPB. The installation of the smart SPB with the proposed optimal design on the south-facing window of buildings can be helpful for raising the electricity self-sufficiency rate of buildings by up to 20.3%. (C) 2019 Elsevier B.V. All rights reserved.
机译:在茂密的建筑物的城市地区,预计建筑集成光伏(BIPV)系统将变得普遍。特别是,太阳能光伏百叶窗(SPB),可以阻挡进入房间的阳光并产生电力,作为一种新的技术趋势。为了便于安装SPB,考虑到使用的光伏面板类型和太阳能跟踪方法,分析了智能SPB的技术经济性能。迄今为止,该研究通过开发的智能SPB进行了实验,以及基于实验结果的技术经济方面的比较分析。本研究的分析结果如下:以相同的成本,(i)单晶硅(Mono-Si)PV面板比无定形硅(A-Si)PV面板产生350.5%的电力; (ii)直接太阳能跟踪系统产生的电力比间接太阳能跟踪方法增加12.9%。因此,为最佳智能SPB选择单可以-SI PV面板和直接太阳能跟踪方法。智能SPB的安装在朝南的建筑物窗口上安装了拟议的最佳设计可能有助于将建筑物的电力自给自足率提高至20.3%。 (c)2019 Elsevier B.v.保留所有权利。

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