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A Novel Active Power Filter based on Injection of alpha-beta Current Components to Power System

机译:一种新型有源电力滤波器,基于注入电力系统的Alpha-Beta电流分量

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摘要

The proliferation of a variety of nonlinear loads and resonance in utility power system results in a large amount of harmonics injection to power system. Active power filter (APF) based on power electronic technology is currently considered as the most competitive equipment for mitigation of power harmonics. Usually, the configuration of APF is referred to one based on voltage source inverter due to easy implementation. Researches on APF mainly focus on two fields: topologies and control strategies. A new topology of APF proposed in this paper is based on the theory of alpha - beta coordinate transformation. This topology accomplishes decoupling of three-phase harmonic currents directly in power converters. Thus, harmonic currents can be injected into power system by directly using two single-phase inverters for three-phase three-line system. By this way, interference by three-phase inverter during harmonic compensation is avoided, and large power APF for harmonic compensation can be achieved easily. The simulation results verify the viability and validity of the novel APF.
机译:本用电力系统各种非线性载荷和共振的增殖导致大量谐波注射到电力系统。基于电力电子技术的有源电力滤波器(APF)目前被认为是减轻电力谐波的最具竞争力的设备。通常,由于易于实现,基于电压源逆变器将APF的配置称为1。对APF的研究主要关注两个领域:拓扑和控制策略。本文提出的APF的新拓扑基于α - β坐标转换的理论。该拓扑结构直接在功率转换器中完成三相谐波电流的去耦。因此,可以通过直接使用用于三相三线系统的两个单相逆变器来注入谐波电流。通过这种方式,避免了三相逆变器的干扰,避免了谐波补偿期间,并且可以容易地实现用于谐波补偿的大功率APF。仿真结果验证了新颖APF的可行性和有效性。

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