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Implementation and Performance of an Anti-Resonance Hybrid Delta-Connected Capacitor Bank for Power Factor Correction

机译:功率因数校正用反谐振混合三角形连接电容器组的实现与性能

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This paper presents a new three-phase anti-resonance hybrid delta-connected capacitor bank for power factor correction in low-voltage industrial power systems. In general, shunt capacitors connected in series with reactors should be designed carefully before installation in order to avoid series and/or parallel harmonic resonance between the capacitors and system inductances. However, the system parameters vary dynamically according to the power system configurations and loads. Consequently, harmonic resonance might occur after the capacitors have been installed. The main objective of the proposed hybrid capacitor bank is to compensate for reactive power without any harmonic resonance. The hybrid capacitor bank is a combination of delta-connected capacitors connecting in series with three small-rating single-phase inverters without any matching transformer. The inverter is used to improve the characteristics of the capacitors. This paper deals with the implementation and control of the hybrid capacitor bank. Experimental results verify the viability and the effectiveness of the proposed anti-resonance hybrid delta-connected capacitor bank for reactive power compensation.
机译:本文提出了一种新型的三相反谐振混合三角形连接电容器组,用于低压工业电力系统中的功率因数校正。通常,与电抗器串联的并联电容器在安装前应仔细设计,以避免电容器与系统电感之间的串联和/或并联谐波谐振。但是,系统参数会根据电力系统配置和负载而动态变化。因此,安装电容器后可能会发生谐波谐振。提出的混合电容器组的主要目的是在无谐波谐振的情况下补偿无功功率。混合电容器组是三角形连接的电容器的组合,该电容器与三个没有任何匹配变压器的小额定值单相逆变器串联连接。逆变器用于改善电容器的特性。本文讨论了混合电容器组的实现和控制。实验结果验证了所提出的反谐振混合三角形连接电容器组用于无功功率补偿的可行性和有效性。

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