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Computationally efficient method for identifying manufacturing induced rotor and stator misalignment in permanent magnet brushless machines

机译:识别永磁无刷电机中制造引起的转子和定子未对准的计算有效方法

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A computationally efficient method is presented to investigate 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. The hybrid analytical / FEA method utilizes superposition of a pole transition over a single stator slot and is used to predict the effect on cogging torque of eccentricity 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 and dynamic eccentricity produce first and second order sidebands about the rotor and stator affected harmonics respectively. There is good agreement between the hybrid analytical method, FEA and measured experimental data.
机译:提出了一种计算有效的方法以研究由由组装和制造公差引起的转子和定子的未对准产生的额外齿轮扭矩谐波,以及在轴向通量,分数间距PMSM。混合分析/ FEA方法利用单个定子槽上的杆过渡的叠加,并用于预测与极点和槽放置不准确的组合的偏心衰弱扭矩的影响。这项工作在先前通过诱导定子和转子的变化组装未对准而发表的,以确定对齿槽扭矩波形的影响。提出了实验数据,支持分析数据,指示静态和动态偏心率分别产生关于转子和定子的第一和二阶边带分别影响谐波。杂交分析方法,FEA和测量的实验数据之间存在良好的一致性。

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