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Comprehensive Analysis and Reduction of Torque Ripples in Three-Phase Four-Switch Inverter-Fed PMSM Drives Using Space Vector Pulse-Width Modulation

机译:使用空间矢量脉冲宽度调制的三相四开关逆变器永磁同步电机驱动器转矩脉动的综合分析和降低

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As a result of their reduced number of switches, three-phase four-switch (TPFS) inverters are generally applied as cost-reduction topologies for permanent magnet synchronous motor (PMSM) drives. However, the torque ripples of PMSM severely deteriorate the performance and reliability of the entire system. Hence, comprehensive considerations for torque ripple reduction, including high- and low-frequency torque ripples, are elaborated considering TPFS inverter-fed PMSM drives. The second-order torque harmonics produced by dc-capacitor voltage fluctuations are first demonstrated, and a very simple compensation method is presented by introducing a novel nonorthogonal coordinate transformation. Then, to evaluate the effects on the high-frequency torque ripples of space vector modulation (SVM) schemes, three SVM schemes for TPFS inverter-fed PMSM drives are assessed based on the torque ripple root-mean-square value. Consequently, the preferred SVM scheme is obtained for high-frequency torque ripple minimization. Moreover, the linear modulation range of the TPFS inverter-fed PMSM drive is derived considering capacitor voltage fluctuations, therein avoiding the low-frequency torque ripples caused by overmodulation. Meanwhile, an adaptive capacitor voltage offset suppression method is proposed to fully exploit the dc-link voltage. The experimental results demonstrate the validation and effectiveness of the proposed analysis and methods for torque ripple reduction.
机译:由于减少了开关数量,三相四开关(TPFS)逆变器通常被用作永磁同步电动机(PMSM)驱动器的降低成本的拓扑结构。但是,PMSM的转矩脉动严重降低了整个系统的性能和可靠性。因此,考虑到TPFS逆变器供电的PMSM驱动器,详细阐述了降低转矩脉动的方法,包括高频和低频转矩脉动。首先演示了由直流电容器电压波动产生的二阶转矩谐波,并通过引入一种新颖的非正交坐标变换,提出了一种非常简单的补偿方法。然后,为了评估对空间矢量调制(SVM)方案对高频转矩脉动的影响,基于转矩脉动均方根值,评估了TPFS逆变器供电的PMSM驱动器的三种SVM方案。因此,获得了用于高频转矩脉动最小化的首选SVM方案。此外,在考虑电容器电压波动的情况下,得出了由TPFS逆变器供电的PMSM驱动器的线性调制范围,从而避免了由过调制引起的低频转矩波动。同时,提出了一种自适应电容器电压失调抑制方法,以充分利用直流母线电压。实验结果证明了所提出的转矩脉动减小分析方法的有效性和有效性。

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