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Acoustic Modeling and Prediction of Ultrahigh-Speed Switched Reluctance Machines Based on Multiphysics Finite Element Analysis

机译:基于多体性有限元分析的超高速开关磁阻机的声学建模与预测

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摘要

High-speed switched reluctance machines (SRMs) have been a timely topic recently. However, for ultrahigh-speed SRMs over 100,000 rpm, the acoustic noise is a significant issue in many applications such as high speed spindles, compressors/ turbochargers, flywheels, and etc. In this article, a multiphysics acoustic modeling of ultrahigh-speed SRMs is presented based on finite element analysis (FEA). First, a three-dimensional electromagnetic FEA is conducted to calculate the radial force on the stator teeth. Then, a modal analysis and a harmonic response analysis are shown in the frequency domain to estimate the natural frequencies and vibration of the whole motor. An acoustic response analysis is done to estimate the sound pressure level (SPL) using the superposition of the surface vibration. To verify the model, experiments are done to measure and compare the natural frequencies and the SPL of a 4/2 ultrahigh-speed SRM at 100,000 rpm. The results show that the SPL of the motor is as high as 115 dB at 10 mm away from the motor, which matches the simulation result (113 dB) well. The impact of the bearing is proven to be negligible compared with the noise generated by the radial force. Finally, a parametric study example of using the proposed model to guide the design of SRMs has been conducted. It is shown that “hot dog” shaped motors have less noise than “pancake” shaped motors under the same motor volume, speed, and power.
机译:高速开关磁阻机(SRMS)最近是及时的话题。然而,对于超过100,000转/分的超高速SRMS,声噪声是许多应用中的重要问题,如高速主轴,压缩机/涡轮增压器,飞轮等。在本文中,超高速SRM的多体声学建模是基于有限元分析(FEA)提出。首先,进行三维电磁FEA以计算定子齿上的径向力。然后,在频域中示出了模态分析和谐波响应分析以估计整个电动机的自然频率和振动。完成声学响应分析以使用表面振动的叠加来估计声压级(SPL)。为了验证模型,进行实验以测量并比较自然频率,并以100,000 rpm为4/2超高速Srm的SEC。结果表明,电动机的SEC高达115 dB,远离电动机10毫米,符合仿真结果(113 dB)。与径向力产生的噪声相比,证明轴承的冲击可忽略不计。最后,已经进行了使用所提出的模型来指导SRMS设计的参数研究示例。结果表明,“热狗”形电动机的噪声小于相同电机容积,速度和功率的“煎饼”形电机。

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