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Spatio-temporal modeling of roof-top photovoltaic panels for improved technical potential assessment and electricity peak load offsetting at the municipal scale

机译:屋顶光伏面板的时空建模,以改进技术潜力评估并抵消市政规模的电力峰值负荷

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Integrated spatial and energy planning has become a major field of interest to meet the current renewable energy share expansion and CO2 emissions reduction targets. Geographic Information Systems (GIS) play a considerable role in supporting decision making in this field. Solar potential maps are a popular strategy to promote renewable energy generation through photovoltaic (PV) panel installations at city and municipal scales. They indicate the areas of roofs that would provide the maximum amount of energy in kW h per year. These are often used to suggest "optimal locations" for PV-panels and/or recommend system sizes to achieve a certain level of yearly autarchy. This approach is acceptable if PVs have only a minor share in the local energy supply system. However, increased PV-penetration can lead to instability of the local grid, create hazards for the security of the supply, and considerably escalate the storage and system back-up requirements. To obtain a proper understanding of the consequences for the local energy balance when selecting or rejecting a certain installation, examining the hourly and intra-hourly time series of the potential energy generation from PVs is necessary. This paper introduces a GIS-based procedure to estimate the potential PV-electricity generation time series for every roof-top section within a study area using open source software. This procedure is complemented by a series of strategies to select suitable PV-installations considering the time series analysis of supply and demand. Furthermore, thirteen technical indicators are considered to evaluate the PV-installation sets selected with every strategy. The capabilities of the procedure are tested using data from a German rural municipality. The proposed procedure constitutes an efficient and accessible way to assess solar potentials at the municipal scale and to design roof-top PV exploitation plans, which are more appropriate to fulfill the local energy requirements. (C) 2015 The Authors. Published by Elsevier Ltd.
机译:集成的空间和能源计划已成为满足当前可再生能源份额扩展和CO2减排目标的主要兴趣领域。地理信息系统(GIS)在支持该领域的决策中扮演着重要角色。太阳能势能图是通过城市和市政规模的光伏(PV)面板装置促进可再生能源发电的流行策略。它们指示了每年可提供最大能量(以kW h为单位)的屋顶区域。这些通常用于建议PV面板的“最佳位置”和/或推荐系统大小以实现一定程度的年度专制。如果光伏发电在当地能源供应系统中仅占很小的份额,则可以接受这种方法。但是,增加的PV渗透率可能导致本地电网不稳定,对电源安全造成危害,并大大提高存储和系统备份要求。为了在选择或拒绝某个安装时正确了解局部能量平衡的后果,有必要检查PV产生的潜在能量的每小时和每小时内时间序列。本文介绍了一种基于GIS的程序,可使用开源软件估算研究区域内每个屋顶区域的潜在光伏发电时间序列。考虑到供应和需求的时间序列分析,此过程由一系列策略来补充,以选择合适的光伏装置。此外,考虑了十三项技术指标来评估每种策略选择的光伏安装集。使用德国乡村市政当局的数据对程序的功能进行了测试。拟议的程序是评估市政规模的太阳能潜力并设计更适合满足当地能源需求的屋顶光伏开发计划的有效途径。 (C)2015作者。由Elsevier Ltd.发布

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