Development of a New Modelling Concept for Power Flow Calculations across Voltage Levels

Tobias Riedlinger, P. Wintzek, M. Zdrallek
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Abstract

In the context of the energy transition, the share of new loads such as charging infrastructure for electromobility and electric heat pumps as well as feed-ins such as photovoltaic systems will steadily increase. This results in an increased degree of complexity for strategic network planning. In particular, the power flow analyses for the dimensioning of transformers and lines per network level currently still require different methods for the correct dimensioning of these equipment. They need to be carried out in separate data sets. For the dimensioning of the equipment simultaneity factors are predominantly used for realistic load assumptions in strategic network planning. These simultaneity factors and resulting load assumptions are determined from the planning perspective of the transformers and from the planning perspective of the lines per network level to be able to dimension the corresponding equipment. This results in different power flow results for the analysis and evaluation of different network levels in particular. This contribution presents a new concept for network modelling in which the simultaneity of the different planning perspectives of the different network levels results from a single power flow calculation in a coherent data set.
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开发跨电压等级电力流计算的新建模概念
在能源转型的背景下,电动汽车充电基础设施和电热泵等新负载以及光伏系统等馈电所占的比例将稳步上升。这就增加了电网战略规划的复杂性。特别是,目前,用于确定变压器和线路尺寸的电力流分析仍然需要不同的方法来正确确定这些设备的尺寸。它们需要在不同的数据集中进行。对于设备尺寸的确定,同时性系数主要用于战略网络规划中的实际负荷假设。这些同时性系数和由此产生的负荷假设是从变压器的规划角度和每个网络层次的线路规划角度来确定的,以便能够确定相应设备的尺寸。因此,在分析和评估不同电网等级时,会产生不同的电力流结果。本论文提出了一种网络建模的新概念,即不同网络层次的不同规划视角同时出现在一个连贯数据集中的单一功率流计算结果中。
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CiteScore
4.80
自引率
0.00%
发文量
1584
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