低压电网过电压风险评估中光伏发电短期波动的概率建模

V. Klonari, F. Vallée, O. Durieux, Z. De Grève, J. Lobry
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引用次数: 8

摘要

分散的光伏发电集成在低压配电网中,使其运行走向主动。在这种情况下,需要新的方法来识别和准确量化这种大规模可再生能源渗透对电网运行的影响。为此,本研究的作者在之前的分析中开发了一个直接基于智能电表数据使用的概率负荷流工具。该工具的目标是量化随着光伏渗透的增加,径向低压电网中过电压的概率。然而,这种方法的缺点是智能电表的采样时间步长(15分钟),不能考虑光伏发电的快速波动。因此,在本文中,提出了对现有工具的原始改编,从而能够考虑光伏功率的短暂临时波动。由于这一新的发展,表明可以更准确地估计由于光伏发电引起的过电压情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probabilistic modeling of short term fluctuations of photovoltaic power injection for the evaluation of overvoltage risk in low voltage grids
Dispersed photovoltaic generation integrated in the low voltage distribution grids leads their operation towards an active approach. In that context, new methodologies are needed in order to identify and to accurately quantify the impact of this massive renewable penetration on the grid operation. For this purpose, the authors of this study have developed in a previous analysis a probabilistic load flow tool directly based on the use of smart meters data. The goal of this tool was to quantify probabilities of overvoltage in radial low voltage grids with increased photovoltaic penetrations. However, the drawback of this approach was the too long (15 minutes) sampling time step of smart meters that did not allow the consideration of fast fluctuations of photovoltaic generation. In the present paper, an original adaptation of the existing tool is therefore presented, which enables the consideration of short temporary photovoltaic power fluctuations. Thanks to this new development, it is shown that a more accurate estimation of overvoltage situations, due to photovoltaic generation, is permitted.
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