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GIS-based optimal photovoltaic panel floorplanning for residential installations

机译:基于GIS的最优光伏面板挡板铺设住宅设施

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Shading is a crucial issue for the placement of PV installations, as it heavily impacts power production and the corresponding return of investment. Nonetheless, residential rooftop installations still rely on rule-of-thumb criteria and on gross estimates of the shading patterns, while more optimized approaches focus solely on the identification of suitable surfaces (e.g., roofs) in a larger geographic area (e.g., city or district). This work addresses the challenge of identifying an optimal (with respect to the overall energy production) placement of PV panels on a roof. The novel aspect of the proposed solution lies in the possibility of having a sparse, irregular placement of individual modules so as to better exploit the variance of solar data. The latter are represented in terms of the distribution of irradiance and temperature values over the roof, as elaborated from historical traces and Geographical Information System (GIS) data. Experimental results will prove the effectiveness of the algorithm through three real world case studies, and that the generated optimal solutions allow to increase power production by up to 28% with respect to rule-of-thumb solutions.
机译:阴影是光伏发电装置的放置一个至关重要的问题,因为它严重影响电力生产和投资的相应回报。然而,住宅屋顶安装仍然依赖于规则的拇指准则和底纹图案的总的估计,而更优化的方法只集中于在一个更大的地理区域合适的表面(例如,屋顶)(的识别例如,城市或区)。这项工作地址识别最优(相对于整体的能源生产)上的屋顶PV板放置的挑战。所提出的方案在于具有稀疏的可能性的新颖方面,单个模块的不规则放置,以便更好地利用太阳能数据的方差。后者被表示在辐照度和温度值在所述屋顶上的分布而言,当从历史痕迹与地理信息系统(GIS)数据阐述。实验结果将通过三个真实世界的案例证明了算法的有效性,以及所产生的最佳解决方案,允许最多增加电力生产28 %,相对于规则的拇指解决方案。

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