电网无功功率的自补偿

V. D. Pavlov
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引用次数: 0

摘要

本文的目的是评估在对称负荷下,变压器级联和并联电抗器对电网无功功率的影响。已经确定,任何相都是其他两相无功功率的来源。反之,任何两相都是第三相无功功率的来源。因此,在对称负载下,无功功率的自补偿就发生了。变压器级联用它们的简化等效电路表示(不包括散射)。如果变压器是相同的,那么来自负载的无功功率流在它们之间被分成相等的部分。因此,外段的无功潮流比内段的三分之一小。由此可见,在实际网络中,随着变电站和并联电抗器数量的增加,无功潮流随着与负荷的距离的增加而显著减小
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Autocompensation of Reactive Power in Electric Networks
The aim of this work is to assess the influence of a cascade of transformers and shunt reactors on the reactive power in the network at a symmetrical load. It has been established that any phase is a source of reactive power for the other two phases. Conversely, any two phases are the source of the third phase reactive power. Thus, with a symmetrical load, self--compensation of reactive power occurs. A cascade of transformers is represented by their simplified equivalent circuits (excluding scattering). If the transformers are identical, then the reactive power flow from the load is divided between them into equal parts. Therefore, the reactive power flow in the outer section is three times less than in the inner section. In accordance with this, in a real network, with an increase in the number of transformer substations and shunt reactors, the reactive power flow significantly decreases with distance from the load
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