采用三维空间矢量调制控制三电平中心分路电能质量补偿器

N. Dai, M. Wong, Ying-duo Han
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引用次数: 4

摘要

在以往的研究中,提出了基于磁滞控制的策略来控制三电平三支路中心分路逆变器,该逆变器可以作为三相四线制系统的并联电能质量补偿器。研究结果表明,三电平中心分裂逆变器复杂的三维空间矢量分配可以简化为两电平中心分裂逆变器的六个空间矢量区域。因此,在二电平中心分体式逆变器的三维空间矢量调制(3DSVM)控制策略的基础上,提出了一种新的三电平三支路中心分体式逆变器的三维空间矢量调制(3DSVM)控制策略。与传统的二维空间矢量调制(2DSVM)不同,由于三维空间矢量位于不同的水平面上,并且每个矢量都有助于零轴补偿,因此零轴分量在这种新型3DSVM中应该是主要关注的问题。当考虑零轴分量时,三相四线制系统的中性电流可以与三相电流谐波同时补偿。仿真结果表明了所提控制策略的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controlling trilevel center-split power quality compensator by 3-dimensional space vector modulation
In the past researches, strategies based on hysteresis control are proposed for controlling trilevel 3-leg center-split inverter, which can be used as a shunt power quality compensator for three-phase four-wire system. In this paper, results indicate that the complicated 3-dimensional (3D) space vector allocation of the trilevel center-split inverter can be simplified into six space vector regions of two-level center-split inverter. Thus, based on the 3D space vector modulation (3DSVM) control strategy for two-level center-split inverter, the novel 3DSVM control strategy for trilevel 3-leg center-split inverter is proposed. Different from the conventional 2-dimensional space vector modulation (2DSVM), the zero-axis component should be of a major concern in this novel 3DSVM since 3D space vectors are located in different horizontal planes and each vector contributes to zero-axis compensation. When the zero-axis component is considered, the neutral current of the three-phase four-wire system can be compensated simultaneously with three-phase current harmonics. Simulation results are given to show the validity of the proposed control strategy.
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