利用3个三相四腿逆变器提高PPMIM驱动器的性能

B. Reddy, A. Iqbal, Sivakumar Keerthipati, M. Alhitmi, A. Hasan, H. Mehrjerdi, Asokan Paraprath, A. Shakoor
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引用次数: 1

摘要

提出了一种用于9相极相调制异步电动机(PPMIM)驱动的多电平逆变器(MLI)方案。所提出的逆变方案是借助3个三相四脚逆变器实现的。在三相12极模式(3PH-I2PO)中,所提出的MLI为PPMIM驱动器的每个相位绕组提供3级电压,并改善了谐波分布。这将使气隙MMF中的空间谐波幅度最小化,从而在3PH-I2PO操作中产生更好的转矩脉动。在这种模式下,为了获得与wwt转矩脉动相同的性能,传统的3级9相MLI需要40个开关,而提出的MLI只需要24个开关,这意味着开关数量减少了40%。另一方面,将9相PPMIM驱动器的相绕组重新排列成3组三相绕组组,其中每个相组有3个平衡的1200相位移绕组。这种相位分组将为使用3相空间矢量脉宽调制(SVPWM)提供灵活性,从而在9相4极模式(9PH-4PO)下将9相PPMIM驱动器的线性调制提高15.4%。每个三相四腿逆变器中的第四腿有效地用于否认9PH-4PO操作中相绕组中的循环电流。在5hp 9相PPMIM驱动器上,利用Ansys Maxwell FEM电磁工具验证了所提出的MLI方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance Enhancement of PPMIM Drives by using 3 Three-Phase Four-Leg Inverters
In this paper, a multilevel inverter (MLI) scheme is proposed for 9-phase pole phase modulated induction motor (PPMIM) drives. The proposed inverter scheme is realized with the help of 3 three-phase four-leg inverters. In 3-phase 12-pole mode (3PH-I2PO), the proposed MLI supplies a 3-level voltage for each phase winding of the PPMIM drive with an improved harmonic profile. This will minimize the amplitude of spatial harmonics in the airgap MMF, which results in better torque ripple in 3PH-I2PO operation. In this mode, for getting the same performance the PPMIM drive in w.r.t torque ripple the conventional 3-level 9-phase MLI’s requires 40 switches, while the proposed MLI requires only 24 switches, which means the switch count is reduced by 40%. On the other hand, the phase windings of the 9-phase PPMIM drive are rearranged into 3 sets of three phase winding groups, where each phase group has three balanced 1200 phase displaced windings. This phase grouping will give the flexibility to use the 3-phase space vector pulse width modulation (SVPWM) that enhances the linear modulation of the 9-phase PPMIM drives by 15.4% in 9-phase 4-pole mode (9PH-4PO). The 4th leg present in each three-phase four-leg inverter is used effectively for denying the circulating currents in phase windings in 9PH-4PO operation. The proposed MLI scheme is validated with the Ansys Maxwell FEM electromagnetic tool on a 5hp 9-phase PPMIM drive.
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