频率比接近1 / 3的模块化多电平矩阵变换器臂功率不平衡分析

Shenquan Liu, Boyang Zhao, Xifan Wang
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引用次数: 0

摘要

分频传输系统(FFTS)是一种很有前途的长距离海上风电场集成方式。模块化多电平矩阵转换器作为50/3 Hz FFTS和50 Hz主电网之间的变频器;然而,当M3C在频率比接近1 / 3时运行时,观察到用于臂间能量平衡的恒定循环电流分量。本文研究了这种臂力不平衡的原因及补偿方法。利用作者在前人的研究中提出的二维相量法对M3C中的三阶谐波进行了建模。随后的分析表明,手臂功率不平衡是由三阶谐波中性点电压与系统侧基频手臂电流分量耦合产生的。然后,提出了消除三阶谐波中性点电压的补偿方法,从而保持手臂功率平衡,抑制恒循环电流。最后,在MATLAB/Simulink环境下进行了仿真研究,验证了所提出的模型和补偿策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis on the Arm Power Imbalance in Modular Multilevel Matrix Converter with Frequency Ratio near One-third
Fractional frequency transmission system (FFTS) is a promising integration method for long-distance offshore wind farms. The modular multilevel matrix converter serves as the frequency converter between the 50/3 Hz FFTS and the 50 Hz main grid; however, constant circulating current component for inter-arm energy balancing is observed when the M3C operates with frequency ratio near one-third. This paper investigates the origin and compensation method for this arm power imbalance. The 3rd-order harmonics in M3C is modelled utilizing the two-dimensional phasor method proposed by the authors in previous research. Subsequent analysis shows that the arm power imbalance is generated by coupling between 3rd-order harmonic neutral-point voltage and the system-side fundamental-frequency arm current component. Then, compensation method is proposed to eliminate the 3rd-order harmonic neutral-point voltage, which resultantly retains the arm power balance and suppresses the constant circulating current. At last, the proposed model and compensation strategy is verified by simulation studies carried out in MATLAB/Simulink environment.
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