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A novel Geo-spatial Clustering Tool applied to Power System Strategic Planning

机译:应用于电力系统战略规划的新型地质空间聚类工具

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Nowadays, power system strategic planning plays a significant role due to long-term ambitious goals imposed by many countries and regions. These objectives involve, amongst others, the inclusion of renewable energies in the electrical power system. Furthermore, spatial clustering methods are widely used in geography-related analyses to identify relevant areas for business decision making, especially in advanced analyses based on Geographic Information Systems (GIS). In this regard, these tools are today widely used to estimate potentials of renewable energy sources by using georeferenced information, such as solar radiation or wind speed. However, current planners consider political or electrical boundaries to perform the planning of the power system. In most cases this view seems inadequate due to the disregard and loss of geo-spatial information. This encourages the application of GIS tools to perform a regional analysis within the planning of the power system. In this paper, a new spatial distance measure is proposed to work with common spatial clustering algorithms to solve the geo-spatial clustering problem with non-spatial attributes and geographic non-overlapping constraints. The clustering is used to achieve the optimal regional division of the power system in terms of renewable energy sources considering GIS. On this basis, the European power system is chosen to evaluate the performance of the developed tool. Results are compared with existing manually selected regions used by other strategic planning methodologies in Europe and the functional benefit is pointed out.
机译:如今,由于许多国家和地区强加的长期雄心勃勃的目标,权力系统战略规划起着重要作用。这些目标涉及,其中包括在电力系统中包含可再生能源。此外,空间聚类方法广泛用于地理相关分析,以确定业务决策的相关领域,特别是在基于地理信息系统(GIS)的高级分析中。在这方面,今天这些工具广泛用于通过使用地理学信息,例如太阳辐射或风速来估计可再生能源的潜力。但是,当前规划者考虑政治或电气界限来执行电力系统的规划。在大多数情况下,由于忽视和丧失地理空间信息,这种观点似乎不足。这鼓励了GIS工具在电力系统规划内进行区域分析。在本文中,提出了一种新的空间距离测量来利用共同的空间聚类算法来解决非空间属性和地理非重叠约束的地理空间聚类问题。考虑到GIS的可再生能源,聚类用于实现电力系统的最佳区域划分。在此基础上,选择欧洲电力系统来评估开发工具的性能。结果与欧洲其他战略规划方法使用的现有手动选定区域进行比较,并指出了功能效益。

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