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Spatial Analysis of Residential Combined Photovoltaic and Battery Potential: Case Study Utrecht, the Netherlands

机译:住宅光伏和电池组合电势的空间分析:荷兰乌得勒支案例研究

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An analysis of current share of potential, level of autarky, self-consumption rate and self-sufficiency rate have been performed for residential photovoltaics (PV) battery combined systems on neighbourhood level for the city of Utrecht in the Netherlands. PV yield potential has been assessed for each roof and scaled to neighbourhood level. Residential demand patterns were created using measured demand patterns and demographic information. All the information has been scaled to the neighbourhood level. It was found that battery systems are currently not required to improve the PV self-sufficiency on neighbourhood scale. Also, the calculated PV potential is not sufficient to meet the residential demand in the neighbourhoods. The historical city centre shows a low PV-battery potential, due to the low PV potential and high demand, whereas the suburban areas show large PV-battery potential. Batteries are useful to improve the self-sufficiency rates up to 14% in the neighbourhoods. The obtained knowledge is valuable for local governments to implement
机译:在荷兰乌得勒支市,对居民用光伏(PV)电池组合系统的潜在潜力,自给自足水平,自耗率和自给率进行了分析。已评估了每个屋顶的光伏发电潜力,并将其缩放到邻域水平。住宅需求模式是使用测得的需求模式和人口统计信息创建的。所有信息已缩放到邻域级别。已经发现,目前不需要电池系统来提高邻域规模的PV自给自足。而且,计算出的PV电位不足以满足附近居民的需求。历史悠久的市中心由于光伏潜力低和需求高而显示出较低的光伏电池潜力,而郊区则具有较大的光伏电池潜力。电池可用于将居民的自给率提高到14%。所获得的知识对于地方政府实施具有重要价值

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