Development of a complex mathematical model for the extreme voltage fluctuations in the public distribution networks

Judith Pálfi, Zsolt Čonka, R. Štefko, F. Molnár
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Abstract

The direction of the electrical energy in the process of power consumption in the distribution grid – until the appearance of new renewable sources- was coming from a small number of large power plants (producers) toward the consumers. With the emergence of the production by Small Domestic Power Plants (SDPP) and E-mobility the load on the low voltage distribution grid lines changed significantly. Unexpected phenomenas appeared such as extreme voltage fluctuations. This paper deals with the extreme voltage fluctuations appearing in the low voltage distribution networks. The voltage fluctuation is considered in relation to the deviation from the fluctuation limits allowed by the Hungarian standard MSZ 477:2019. For the scientifical description of the extreme voltage fluctuations a new database system has been created containing the data required to formulate, describe, model and analyze the subject. The authors of this paper aim to develop and present in detail a mathematical model that deals in a complex way with the subject of extreme voltage fluctuations in the public distribution networks.
建立了公共配电网中电压极端波动的复杂数学模型
在新的可再生能源出现之前,在配电网的电力消耗过程中,电能的方向是从少数大型发电厂(生产商)流向消费者。随着国内小型发电厂生产和电动汽车的出现,低压配电网线路负荷发生了显著变化。出现了电压剧烈波动等意想不到的现象。本文讨论了低压配电网中出现的电压极端波动问题。电压波动与匈牙利标准MSZ 477:2019允许的波动限值的偏差有关。为了科学地描述极端电压波动,已经创建了一个新的数据库系统,其中包含了制定、描述、建模和分析该主题所需的数据。本文的作者旨在发展并详细地提出一个数学模型,以复杂的方式处理公共配电网中极端电压波动的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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