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Big data mining for the estimation of hourly rooftop photovoltaic potential and its uncertainty

机译:大数据挖掘估计每小时屋顶光伏潜力及其不确定性

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The large-scale deployment of photovoltaics (PV) on building rooftops can play a significant role in the transition to a low-carbon energy system. To date, the lack of high-resolution building and environmental data and the large uncertainties related to existing processing methods impede the accurate estimation of large-scale rooftop PV potentials. To address this gap, we developed a methodology that combines Machine Learning algorithms, Geographic Information Systems and physical models to estimate the technical PV potential for individual roof surfaces at hourly temporal resolution. We further estimate the uncertainties related to each step of the potential assessment and combine them to quantify the uncertainty on the final PV potential. The methodology is applied to 9.6 million rooftops in Switzerland and can be transferred to any large region or country with sufficient available data. Our results suggest that 55% of the total Swiss roof surface is available for the installation of PV panels, yielding an annual technical rooftop PV potential of 24 +/- 9 TWh. This could meet more than 40% of Switzerland's current annual electricity demand. The presented method for an hourly rooftop PV potential and uncertainty estimation can be applied to the large-scale assessment of future energy systems with decentralised electricity grids. The results can be used to propose effective policies for the integration of rooftop photovoltaics in the built environment.
机译:在建筑物屋顶上大规模部署光伏(PV)可以在向低碳能源系统过渡中发挥重要作用。迄今为止,缺乏高分辨率的建筑和环境数据以及与现有处理方法相关的巨大不确定性阻碍了大规模屋顶光伏潜力的准确估算。为了解决这一差距,我们开发了一种方法,该方法结合了机器学习算法,地理信息系统和物理模型,以每小时的时间分辨率估算各个屋顶表面的技术PV潜力。我们进一步估计与电位评估的每个步骤相关的不确定性,并将它们结合起来以量化最终PV电位的不确定性。该方法已应用于瑞士的960万个屋顶,并且可以将其转移到任何具有足够可用数据的大区域或国家。我们的结果表明,瑞士屋顶总表面的55%可用于安装光伏面板,从而产生的年度技术屋顶光伏潜力为24 +/- 9 TWh。这可以满足瑞士目前每年电力需求的40%以上。提出的每小时屋顶光伏电势和不确定性估计的方法可用于带有分散电网的未来能源系统的大规模评估。研究结果可用于提出在建筑环境中集成屋顶光伏的有效政策。

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