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Power Factor Correction in Multi-pulse Rectifier Using Zigzag Auto-connected Transformer and Non-isolated SEPIC Converters

机译:使用Zigzag自动连接的变压器和非隔离SEPIC转换器的多脉冲整流器中的功率因数校正

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To enhance the harmonic mitigation capability of the multi-pulse rectifier, this paper proposes a multi-pulse rectifier based on harmonic mitigation technology at DC link. The conventional 12-pulse rectifier does not meet the IEEE-519 standard and hence the active power factor correction technique is employed to mitigate the harmonics. The proposed system employs two diode bridge rectifiers, each followed by a SEPIC converter, by controlling the SEPIC converter inductor current, the input line current of the rectifier can be approximated to a sinusoidal waveform. A zigzag connected autotransformer is used as a phase-shift transformer in order to provide a phase shift and inherently blocks the zero sequence components. This method reduces the total harmonic distortion and also decreases the size of the system. The proposed configuration is analyzed and simulated in the MATLAB Simulink and also implemented in laboratory. The results show that the proposed method improves the power quality by reducing the total harmonic distortion (THD) in the input line current.
机译:为提高多脉冲整流器的谐波缓解能力,本文提出了一种基于DC链路谐波缓解技术的多脉冲整流器。传统的12脉冲整流器不符合IEEE-519标准,因此采用有源功率因数校正技术来减轻谐波。所提出的系统采用两个二极管桥式整流器,每个二极管桥式整流器,每个后跟SEPIC转换器,通过控制SEPIC转换器电感电流,整流器的输入线电流可以近似于正弦波形。 Zigzag连接的自耦变压器用作相移换变压器,以便提供相移并固有地阻挡零序组件。该方法降低了总谐波失真,并且还降低了系统的大小。在Matlab Simulink中分析和模拟所提出的配置,也在实验室中实现。结果表明,该方法通过降低输入线电流中的总谐波失真(THD)来提高功率质量。

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