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Building Synthetic Power Transmission Networks of Many Voltage Levels, Spanning Multiple Areas

机译:构建多个电压等级的综合输电网络,跨越多个区域

摘要

Synthetic power grids, that is, test cases designed to match realistic structural and statistical characteristics of actual grids, are useful for research, development, and demonstration of innovations, since the cases are fictitious and thus free from data confidentiality issues. Building on previous work, this paper addresses a couple of related problems in the transmission network synthesis process. These issues appear as created cases become larger and involve multiple areas and overlapping nominal voltage levels. A fast, scalable hierarchical clustering is designed to assign voltage levels to substations considering the needs of the system, the specific constraints of the area, and smooth interconnections between neighboring areas with different voltage levels. A line topology generation framework is considered that is appropriate for many networks of different voltage levels, constructed together for a useful, realistic grid. These methods are demonstrated in a new 2000 bus test case, validated and publicly released.
机译:合成电网,即旨在匹配实际电网的现实结构和统计特性的测试用例,对于案例的研究,开发和演示非常有用,因为这些案例是虚构的,因此没有数据机密性问题。在以前的工作的基础上,本文解决了传输网络综合过程中的两个相关问题。这些问题随着产生的情况变大而出现,涉及多个区域和重叠的标称电压电平。快速,可扩展的分层聚类设计用于考虑系统的需求,区域的特定约束以及具有不同电压水平的相邻区域之间的平滑互连,从而为变电站分配电压级别。人们认为线拓扑生成框架适用于许多不同电压等级的网络,这些网络一起构建在一起就构成了一个有用的,现实的电网。这些方法在一个经过验证并公开发布的新的2000总线测试案例中得到了证明。

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