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Electromagnetic vibration and noise analysis of permanent magnet synchronous motor with different slot-pole combinations

机译:不同槽极组合的永磁同步电动机的电磁振动和噪声分析

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This study first employs Maxwell stress tensor method to derive the spatial and temporal distribution characteristics of radial force which induces the electromagnetic vibration and noise. 2D fast Fourier transform is adopted to obtain the frequency components of radial force with specifically spatial harmonic order and force harmonics in six motors with different slot-pole combinations are compared. Then, a multiphysics model for electromagnetic vibration and noise prediction considering the non-uniformly distributed force on the teeth surface is established. Mode superposition method and boundary element method are, respectively, used to calculate the stator vibration and noise. The vibration and noise level in motors with different slot-pole combinations are compared and the corresponding field harmonic sources of noise peaks are located based on 2D decomposing of radial force. Finally, the noise level under different rotational speed and current is discussed. It is mainly concluded that the lowest spatial order force dominates the vibration and noise performance. The noise level under different rotational speed and current depends on the amplitude and frequency of the lowest order force which is the closest to the frequency of the stator mode with the same spatial order.
机译:本研究首先采用麦克斯韦应力张量法推导引起电磁振动和噪声的径向力的时空分布特征。采用二维快速傅里叶变换获得径向力的频率分量,该径向力具有特定的空间谐波阶数,并比较了六个具有不同槽极组合的电机的力谐波。然后,建立了考虑牙齿表面不均匀分布力的电磁振动和噪声预测的多物理场模型。模式叠加法和边界元法分别用于计算定子振动和噪声。比较了具有不同槽极组合的电动机的振动和噪声水平,并基于径向力的二维分解确定了相应的噪声峰值场谐波源。最后,讨论了不同转速和电流下的噪声水平。主要结论是,最低的空间有序力主导了振动和噪声性能。在不同转速和电流下的噪声水平取决于最低阶次力的幅度和频率,该最低阶次力最接近具有相同空间阶次的定子模式的频率。

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