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The Current Harmonics Elimination Control Strategy for Six-Leg Three-Phase Permanent Magnet Synchronous Motor Drives

机译:六腿三相永磁同步电动机驱动器的当前谐波消除控制策略

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This paper focuses on the analysis and development of low-current harmonics for a six-leg, three-phase inverter for permanent-magnet synchronous motor (PMSM) drives. Each phase of the PMSM is operating independently, the low-order harmonics appear in the back electromotive forces (EMFs) and currents. In this case, the standard vector control cannot handle the current harmonics. This harmonic enhances the current and causes the torque ripple. This paper presents a zero-axis current estimator auxiliary vector control method to compensate for three multiples of the voltage harmonic. This method can eliminate the zero-axis current. A prototype PMSM system was built using the TMS302F28335 digital signal processor. And the computer simulation and control method were completed. When the system operated at half load, the total harmonic distortion of current decreased from 20.89% to 4.42%. At full load, the total harmonic distortion of current decreased from 8.43% to 1.71%.
机译:本文着重分析和开发用于永磁同步电动机(PMSM)驱动器的六臂三相逆变器的低电流谐波。 PMSM的每个相都独立运行,低阶谐波出现在反电动势(EMF)和电流中。在这种情况下,标准矢量控制无法处理当前谐波。该谐波会增加电流并引起转矩波动。本文提出了一种零轴电流估算器辅助矢量控制方法,以补偿电压谐波的三倍。这种方法可以消除零轴电流。使用TMS302F28335数字信号处理器构建了PMSM原型系统。并完成了计算机仿真与控制方法。当系统在半负载下运行时,电流的总谐波失真从20.89%降至4.42%。在满载时,电流的总谐波失真从8.43%降低到1.71%。

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