基于开放数据和开源软件的住宅低压电网模型自动生成优化方法

H. Çakmak, Luc Janecke, Moritz Weber, V. Hagenmeyer
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摘要

本文的贡献是一种新的,更精细的方法,用于仅基于公开可用的GIS和统计数据自动创建大规模详细的配电网模型。利用开放街道地图中的街道布局作为潜在的电缆路线,创建了一个图形表示,并辅以从同一数据源中提取的住宅单元。利用二次变电站的数据,通过求解最小成本流线性优化问题的变化,调整图结构以匹配低压电网拓扑结构。在最后一步,生成的电网表示被转移到DIgSILENT PowerFactory模型,包括光伏系统。所呈现的工作流使用开源软件,并且是完全自动化和可伸缩的。它允许为给定的20kV变电站位置和住宅单元属性的附加数据生成现成的配电网仿真模型,以改进结果。本文以某郊区住宅小区为例,对当前住宅光伏安装和未来光伏全面扩容等8种场景进行了潮流模拟,并对电网利用率进行了分析。对于后者,仿真结果表明,在无电池的情况下,全光伏容量部署时低压电网出现严重拥塞。此外,所生成的模型对准动态仿真具有适用性。
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An Optimization-based Approach for Automated Generation of Residential Low-Voltage Grid Models Using Open Data and Open Source Software
The contribution of the present paper is a new, more refined method for the automated creation of large-scale detailed distribution grid models based solely on publicly available GIS and statistical data. Utilizing the street layouts in Open Street Maps as potential cable routes, a graph representation is created and complemented by residential units that are extracted from the same data source. This graph structure is adjusted to match the electrical low-voltage grid topology by solving a variation of the minimum cost flow linear optimization problem with provided data on secondary substations. In a final step, the generated grid representation is transferred to a DIgSILENT PowerFactory model including photovoltaic systems. The presented workflow uses open source software and is fully automated and scalable. It allows the generation of ready-to-use distribution grid simulation models for given 20kV substation locations and additional data on residential unit properties for improved results. The performance of the developed method with respect to grid utilization is presented for a selected suburban residential area with power flow simulations for eight scenarios including current residential photovoltaic installation and a future scenario with full photovoltaic expansion. For the latter, the simulation results indicate heavy congestion in the low-voltage grid for full photovoltaic capacity deployment without batteries. Furthermore, the suitability of the generated models for quasi-dynamic simulations is shown.
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