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Data from numerical analysis simulation and experimental determinations performed to verify the sizing of an unbalanced capacitive compensator for three-phase four-wires networks

机译:来自数值分析仿真和实验确定的数据用于验证三相四线网络不平衡电容补偿器的尺寸

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摘要

In a three-phase four-wire distribution network, the load unbalance can be compensated by the use of an unbalanced three-phase reactive compensator, containing six single-phase coils and capacitors, grouped into two distinct circuits, having Yn and delta connections. In (Pană et al., 2020) is presented a method of calculating the equivalent susceptances of the six reactive elements, so that they are capacitive or null. The paper demonstrates that a power factor improvement and a total or partial balancing of an unbalanced inductive load can be achieved by using an unbalanced capacitive compensator. The calculation method can be implemented in the control system of a SVC containing only single-phase capacitor banks. In this DiB article are presented additional data and information, obtained by numerical analysis, simulation-modeling and experimental determinations performed with the purpose of validation of the calculation method proposed in (Pană et al., 2020).
机译:在三相四线配电网络中,可以通过使用不平衡的三相无功补偿器来补偿负载不平衡,该不平衡三相无功补偿器包含六个单相线圈和电容器,分为两个不同的电路,具有Yn和三角形连接。在(Panăet al。,2020)中提出了一种计算六个电抗元件的等效电纳的方法,因此它们是电容性的或为零。本文证明,通过使用不平衡电容补偿器,可以实现功率因数的改善和不平衡电感负载的全部或部分平衡。可以在仅包含单相电容器组的SVC的控制系统中实现该计算方法。在这篇DiB文章中介绍了其他数据和信息,这些数据和信息是通过数值分析,仿真模型和实验确定获得的,目的是验证(Panăet al。,2020)中提出的计算方法。

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