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Sensitivity of a 5-phase Brushless DC machine to the 7th harmonic of the back-electromotive force

机译:5相无刷直流电机对反电动势的7次谐波的灵敏度

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摘要

This paper presents a vector control of a 5-phase drive composed of a 5-leg Pulse Width Modulation (PWM) Voltage Source Inverter (VSI) supplying a permanent-magnet Brushless DC (BLDC) machine with trapezoidal waveform of the back-electromotive force (EMF). To achieve this control a Multi-machine Multi-converter model is used: the 5-phase machine is transformed into a set of two 2-phase fictitious machines which are each one controlled in a (d,q) frame as 3-phase machines with sine waveform back-EMF. In comparison with the 3-phase BLDC drives, the 5-phase ones present one particularity: a high sensitivity to the 7th harmonic of back-EMF. Experimental results show that the 7th harmonic of back-EMF, which represents only 5% of RMS back-EMF, induces high amplitude parasitic currents (29 % percent of RMS current). The model allows to explain the origin of this sensitivity and how to modify simply the control algorithm. Experimental improvements of the drive are presented.
机译:本文提出了一种由5脚脉宽调制(PWM)电压源逆变器(VSI)组成的5相驱动器的矢量控制,该逆变器为永磁无刷直流(BLDC)电机提供了梯形的反电动势波形(EMF)。为了实现此控制,使用了多机多转换器模型:将5相机转换为两个2相虚拟机的集合,每个相机在一个(d,q)框架中作为3相机进行控制。正弦波形反电动势。与三相BLDC驱动器相比,五相BLDC驱动器具有一种特殊性:对反电动势的7次谐波具有很高的灵敏度。实验结果表明,反电动势的7次谐波(仅占RMS反电动势的5%)会感应出高幅度的寄生电流(占RMS电流的29%)。该模型可以解释这种敏感性的起源以及如何简单地修改控制算法。提出了驱动器的实验改进。

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