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Radial Force Density Analysis of Switched Reluctance Machines: The Source of Acoustic Noise

机译:开关磁阻电机的径向力密度分析:声噪声源

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Closer attention has been given to the acoustic noise performance of electric motors as electrified powertrains penetrate into our transportation system. In particular, switched reluctance machine introduces a new challenge to acoustic noise aspect given that the temporal harmonics of high amplitudes on the radial direction can excite the natural frequencies of the main circumferential modes. A practical understanding of the radial force density decomposition is crucial in identifying the primary source of acoustic noise at different operating points, and it is the main contribution of this paper. An analytical expression is introduced to identify the temporal harmonic orders that excite different spatial mode shapes. The combination of the circumferential and temporal harmonic orders results in a force density surface wave that travels in the clockwise (CW) or counter CW direction. The mode excitation is investigated along with the sound pressure level produced by the primary vibrating mode shapes. Acoustic noise characteristics for each mode and the corresponding natural frequency at different speeds have been analyzed by using a waterfall plot.
机译:当电气化的动力总成渗透到我们的运输系统中时,人们对电动机的声学性能给予了越来越多的关注。特别地,鉴于在径向方向上的高幅度的瞬时谐波可以激发主要圆周模式的固有频率,因此开关磁阻电机对声噪声方面提出了新的挑战。对径向力密度分解的实际理解对于识别不同工作点处的主要声源至关重要,这是本文的主要贡献。引入解析表达式来识别激发不同空间模式形状的时间谐波阶次。圆周谐波和时间谐波次数的组合会产生沿顺时针(CW)或逆CW方向传播的力密度表面波。与主要振动模式形状产生的声压级一起研究了模式激励。已通过使用瀑布图分析了每种模式的声噪声特征以及不同速度下的相应固有频率。

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