无刷永磁电机制造中转子和定子感应错位的辨识

M. Thiele, G. Heins, D. Patterson
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引用次数: 6

摘要

分数螺距永磁同步电机的齿槽转矩在制造误差最小化的同时也最小化。本文研究了轴向磁通分数螺距永磁同步电机中由装配和制造公差引起的转子和定子不对中所产生的额外齿槽转矩谐波。提出了一种利用极点跃迁叠加在单个定子槽上的分析/有限元混合方法,以预测角不对中与极点和槽位置不精确相结合对齿槽转矩的影响。这项工作扩展了先前发表的,通过诱导不同程度的定子和转子的装配错位来确定对齿槽转矩波形的影响。实验数据支持了分析数据,表明静态角不对准在转子周围产生影响谐波的侧带,动态角不对准在定子周围产生影响谐波的侧带。分析方法、有限元分析和实测实验数据吻合较好。
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Identifying manufacturing induced rotor and stator misalignment in brushless permanent magnet motors
Cogging torque in fractional pitch PMSM is minimized when manufacturing induced errors are also minimized. This paper investigates additional cogging torque harmonics resulting from misalignment of the rotor and stator caused by assembly and manufacturing tolerances in an axial flux, fractional pitch PMSM. A hybrid analytical / FEA method utilizing superposition of a pole transition over a single stator slot is developed to predict the effect on cogging torque of angular misalignment in combination with pole and slot placement inaccuracies. This work extends on that previously published by inducing varying degrees of assembly misalignment of the stator and rotor to determine the effect on cogging torque waveforms. Experimental data is presented supporting the analytical data indicating that static angular misalignment produces sidebands about the rotor affected harmonics and dynamic angular misalignment creates sidebands around the stator affected harmonic. There is good agreement between the analytical method, FEA and measured experimental data.
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