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New Optimal Pulsewidth Modulation for Single DC-Link Dual-Inverter Fed Open-End Stator Winding Induction Motor Drive

机译:单直流母线双逆变器馈入式开放式定子绕组感应电动机驱动的新型最佳脉宽调制

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摘要

The multilevel topology with dual inverters feeding both ends of an open-end stator winding of an induction motor has been introduced around two decades ago. A common-mode inductor is usually required in series with motor windings to suppress zero-sequence or common-mode currents. In case of medium voltage high-power drives, low device switching frequency operation is preferred to improve the overall system efficiency. However, it increases the harmonic distortion of machine stator currents. Therefore, the goal of our study is to propose new optimal pulse  width modulation to achieve: low device switching frequency, minimal harmonic distortion of machine stator currents, and elimination of zero-sequence currents. The main idea is to select the switching angles of two inverters such that zero-sequence components are eliminated and, then, perform optimization to determine switching angles that minimize the harmonic distortion of machine stator currents. The experimental results obtained from dual two-level and dual three-level inverter fed 1.5-kW open-end stator winding IM drive demonstrated the effectiveness of a proposed modulation technique.
机译:大约在20年前就已经提出了带有双逆变器的多级拓扑结构,该逆变器为感应电机的开放式定子绕组的两端供电。通常需要将共模电感器与电动机绕组串联以抑制零序电流或共模电流。在中压大功率驱动器的情况下,为了提高整体系统效率,优选使用低设备开关频率操作。但是,它会增加电机定子电流的谐波失真。因此,我们的研究目标是提出一种新的最佳脉冲宽度调制,以实现:较低的设备开关频率,最小的电机定子电流谐波失真以及消除零序电流。主要思想是选择两个逆变器的开关角度,以消除零序分量,然后进行优化以确定使电机定子电流的谐波失真最小的开关角度。从双二电平和双三电平逆变器供电的1.5 kW开放式定子绕组IM驱动器获得的实验结果证明了所提出的调制技术的有效性。

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