首页> 外文会议>IEEE International Electric Machines and Drives Conference >Detection Method of Static Eccentricity Using Third-order Harmonic Component of No-load Line-line Voltages on Three-group and Three-phase Permanent Magnet Synchronous Motors
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Detection Method of Static Eccentricity Using Third-order Harmonic Component of No-load Line-line Voltages on Three-group and Three-phase Permanent Magnet Synchronous Motors

机译:三阶谐波分量在三组和三相永磁同步电动机上使用空载线电压三阶谐波分量检测方法

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Since permanent magnet synchronous motors (PMSMs) have advantages of efficiency and energy density, they are now widely being used for many purposes. Based on such increased use, they require improved efficiency, lower acoustic noise, and fewer vibrations. However, such fabrication tolerances as eccentricity and roundness degradation generate a magnetic unbalance in the magnetic gap and cause low-order harmonics of electromagnetic force and cogging torque that create acoustic noise and vibrations. Since multi-three-phase PMSMs can individually control the phase current of each group, reducing the magnetic unbalance is possible in the magnetic gap. To control the phase current of each group, magnetic unbalance must be detected. In this study, we focus on static eccentricity as a representative fabrication tolerance and propose a method to detect it using the third-order harmonic component of no-load line-line voltages, which is easily measurable in practical production processes. We demonstrate our method that estimates the amount and direction of static eccentricity with a theoretical approach and confirm its detection by finite element analysis (FEA).
机译:由于永磁体同步电动机(PMSMS)具有效率和能量密度的优点,因此它们现在广泛地用于许多目的。基于这种增加的使用,它们需要提高效率,降低声噪声和较少的振动。然而,这种制造公差作为偏心和圆度降低产生磁隙中的磁性不平衡,并且导致电磁力的低位谐波和产生声学噪声和振动的齿槽扭矩。由于多三相PMSM可以单独控制每个组的相电流,因此在磁隙中可以降低磁不平衡。为了控制每个组的相电流,必须检测到磁不平衡。在这项研究中,我们专注于静偏心作为代表性的制造公差,并提出使用空载线路电压的三阶谐波分量来检测其的方法,这在实际生产过程中很容易可测量。我们展示了我们用理论方法估计静态偏心率的量和方向,并通过有限元分析(FEA)确认其检测。

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