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首页> 外文期刊>Transportation Electrification, IEEE Transactions on >Optimal Vector Sequences for Simultaneous Reduction of the Switching Loss, Zero-Sequence Circulating Current, and Torque Ripple in Two Parallel Interleaved Inverter-Fed PMSM Drives
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Optimal Vector Sequences for Simultaneous Reduction of the Switching Loss, Zero-Sequence Circulating Current, and Torque Ripple in Two Parallel Interleaved Inverter-Fed PMSM Drives

机译:用于同时降低开关损耗,零序循环电流和两个并联交织逆变器供给的PMSM驱动器中的零序循环电流和扭矩纹波的最佳矢量序列

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摘要

The two-parallel interleaved converters system is essentially a multilevel converter and introduces more vector redundancies than a single converter, leaving a large space for vector sequences optimization for the simultaneous optimization of crucial indicators. However, the vector redundancies have not been fully explored by previous studies to achieve multiple crucial indicators optimization. This article aims to obtain high efficiency and low torque ripples for the two-parallel interleaved converters-fed permanent-magnet synchronous motor (PMSM), which are dominantly affected by the switching loss, zero-sequence circulating current (ZSCC), and torque ripples. First, given the vector redundancies, this article explores the available vector sequences according to switching times, the minimal torque ripple, and ZSCC with a priority of the switching times. The resultant vector sequences split each 60 degrees sector into eight subsectors, but each subsector has redundant vector sequences. Then, this article further quantitatively analyzes the torque ripple and ZSCC of the redundant vector sequences in the subsectors, based on which each subsector applies an optimal vector sequence. Despite the complexity of the divisions of the subsectors, this article proposes a simple carrier-based modulation scheme and the implementation of the proposed optimal vector sequences amounts to corresponding common-mode voltage (CMV) injections into the references, which only require a simple logic judgment. The theoretical analysis confirms that the proposed method yields smaller torque ripples, ZSCCs, and switching losses than existing pulsewidth modulation (PWM) schemes over the whole modulation indices. Finally, the experimental results further verify the theoretical analysis and the effectiveness of the proposed strategy.
机译:两个平行交织的转换器系统基本上是多级转换器,并引入比单个转换器的更多向量冗余,留下了向载体序列优化的大空间,以同时优化关键指标。然而,前面的研究尚未完全探索向量冗余,以实现多个关键指标优化。本文旨在获得用于双平行交错的转换器供给永磁同步电动机(PMSM)的高效率和低扭矩涟漪,其由开关损耗,零序循环电流(ZSCC)和扭矩涟漪显着影响。首先,给定矢量冗余,本文根据切换时间,最小转矩纹波和ZSCC的优先级,探讨了可用的向量序列。得到的矢量序列将每个60度扇区分成八个子区,但每个子级具有冗余矢量序列。然后,本文进一步定量地分析子区内冗余载体序列的扭矩脉动和ZSCC,基于每个子级应用最佳矢量序列。尽管分部门的部门的复杂性,但本文提出了一种简单的载波的调制方案,并且所提出的最佳矢量序列的实施方式相应的共模电压(CMV)注射进入参考资料,只需要一个简单的逻辑判断。理论分析证实,所提出的方法在整个调制指标上产生比现有的脉冲宽度调制(PWM)方案的扭矩涟漪,ZSCCS和切换损耗。最后,实验结果进一步验证了理论分析和拟议策略的有效性。

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