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Acoustic Noise Analysis of a High-Speed High-Power Switched Reluctance Machine: Frame Effects

机译:高速大功率开关磁阻电机的噪声分析:框架效应

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This paper examines the effect of frame on the acoustic noise and vibration of a high-speed and high-power switched reluctance machine (SRM). Five types of frame/ribs are investigated, where different frame thicknesses, types of cooling ribs, and frame shapes have been analyzed. For this purpose, a 12/8 SRM has been designed at 22 000 r/min and 150 kW and two stages have been applied. In the first stage, a new equivalent stiffness of the frame is utilized in order to estimate the resonant frequencies for different frame shapes. The paper provides a mathematical calculation method and evaluates its effectiveness with finite-element simulations. The results indicate an improvement between 4% and 25% in the estimation natural frequencies. The second stage includes the vibration and acoustic noise analysis using 3-D finite-element method. Considerations for acoustic noise reduction in high-speed SRM using different frame types and cooling ribs are discussed. Particularly, radial and screw-type configurations represent a better solution to decrease the sound pressure level up to 12 dB.
机译:本文研究了框架对高速大功率开关磁阻电机(SRM)的噪声和振动的影响。研究了五种类型的框架/肋骨,其中分析了不同的框架厚度,冷却肋类型和框架形状。为此,已将12/8 SRM设计为22 000 r / min和150 kW,并采用了两个阶段。在第一阶段,利用新的等效框架刚度来估计不同框架形状的共振频率。本文提供了一种数学计算方法,并通过有限元模拟评估了其有效性。结果表明估计的固有频率提高了4%到25%。第二阶段包括使用3-D有限元方法的振动和声噪声分析。讨论了在使用不同框架类型和冷却肋条的高速SRM中降低声学噪声的注意事项。特别是径向和螺旋式配置代表了一种更好的解决方案,可以将声压级降低到12dB。

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