Zero-Sequence Circulating Current Suppression in Multi-paralleled Three-Level NPC Inverters under Unbalanced Operating Conditions

Jun-Hyeok Park, Kyo-Beum Lee
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引用次数: 2

Abstract

This paper presents methods for suppressing high-frequency (HF-) zero-sequence circulating current (ZSCC) generated by interleaved pulse width modulation (PWM) and low-frequency (LF-) ZSCC generated by inconsistent circuit parameters or inconsistent reference signals. In medium/$h$ igh power applications, three-level neutral-point-clamped (NPC) inverters are used in parallel connection to obtain high power rating. In this parallel operation, interleaved PWM is used to improve the quality of the output current with a small filter inductor. However, ZSCC increases due to the small filter inductor. The proposed methods for suppression of HF-ZSCC generated by interleaved PWM are alternative phase opposite disposition (APOD) PWM based on carrier modulation and double-reference PWM (DRPWM) based on reference signal modulation. Additionally, the method that injects an optimized zero-sequence voltage (ZSV) when LF-ZSCC is generated is added to suppress HF- and LF-ZSCC simultaneously. The ZSCC suppression performance is proved by the simulation results.
不平衡工况下多并联三电平NPC逆变器零序循环电流抑制
本文提出了抑制交错脉宽调制(PWM)产生的高频(HF-)零序循环电流(ZSCC)和抑制电路参数不一致或参考信号不一致产生的低频(LF-)零序循环电流的方法。在中/高功率应用中,三电平中性点箝位(NPC)逆变器并联使用以获得高额定功率。在这种并联操作中,交错脉宽调制被用来提高输出电流的质量与一个小的滤波电感。然而,由于滤波器电感小,ZSCC增加。本文提出了基于载波调制的交替相位对置PWM (APOD)和基于参考信号调制的双参考PWM (DRPWM)两种方法来抑制交错PWM产生的HF-ZSCC。此外,还增加了在产生LF-ZSCC时注入优化零序电压(ZSV)的方法,以同时抑制HF-和LF-ZSCC。仿真结果验证了ZSCC的抑制性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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