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Analysis of vibration and acoustic noise in permanent magnet motors.

机译:永磁电动机的振动和噪声分析。

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摘要

The drive motor is a frequent source of vibration and acoustic noise in many precision spindle motors. One of the electromagnetic sources of vibration in permanent magnet motors is the torque ripple, consisting of the reluctance torque and electromagnetic torque fluctuation. This type of vibration is becoming more serious with the advent of new high-grade magnets with increased flux density. Acoustic noise of electromagnetic origin is difficult to predict and its exact mechanism is unclear. The mechanism of noise generation should be revealed to design a quieter motor which is the modern customer's demand.;For motor operation at low speeds and loads, torque ripple due to the reluctance torque is often a source of vibration and control difficulty. The reluctance torque in a motor was calculated from the flux density by a finite element method and the Maxwell stress method. Effects of design parameters, such as stator slot width, permanent slot width, airgap length and magnetization direction, were investigated. Magnet pole shaping, by gradually decreasing the magnet thickness toward edges, yields a sinusoidal shape of the reluctance torque with reduced harmonics, thus reducing the vibration. This dissertation also presents two motor design techniques: stator tooth notching and rotor pole skewing with magnet pole shaping, and the effect of each method on the output torque. The analysis shows that the reluctance torque can be nearly eliminated by the suggested designs, with minimal sacrifice of the output torque.;In permanent magnet DC motors, the most popular design type is the trapezoidal back electro-motive force (BEMF), for switched DC controllers. It is demonstrated that the output torque profile of one phase energized is qualitatively equivalent to the BEMF profile for motors with reduced reluctance torque. It implies that design of BEMF profile is possible by magnetic modeling of a motor, without expensive and time-consuming experiments for different designs. The effect of various design parameters on the output torque and torque ripple are discussed. Design parameters include winding patterns, magnetization direction, magnet arc length, number of segments in poles and magnet pole shaping. New designs of trapezoidal BEMF motors are proposed to reduce the electromagnetic torque ripple. Magnet stepping and magnet edge shaping with reduced arc length, significantly reduce torque ripple, with minimal sacrifice of the maximum output torque.;Acoustic noise of electromagnetic origin is investigated using a magnetic frame which emulates a DC motor. The driving electromagnetic force is calculated using finite element analysis and the resulting vibration and acoustic noise is measured. Acoustic noise of purely electromagnetic origin was also tested with a DC brushless motor to confirm the results of the magnetic frame. The mechanism of noise generation in a DC motor is a quasi-static response of a stator not only at the fundamental frequency but also at higher harmonic frequencies of alternating switched DC, which is a current characteristic of a DC motor. Noise generation is significantly aggravated when some of those harmonics are close to the resonant frequencies of the stator. Therefore, acoustic noise is highly dependent upon the excitation current shape, as higher harmonics may match with resonant frequencies of the stator.
机译:在许多精密主轴电机中,驱动电机经常会产生振动和噪音。永磁电动机中的电磁振动源之一是转矩脉动,由磁阻转矩和电磁转矩波动组成。随着新型高磁通密度增加的高级磁体的出现,这种振动变得越来越严重。电磁起源的噪声很难预测,其确切机理还不清楚。应该揭示噪声产生的机理,以设计一种安静的电动机,这是现代客户的需求。对于低速和低负荷的电动机运行,由于磁阻转矩引起的转矩脉动通常是振动和控制困难的根源。通过磁通密度的有限元法和麦克斯韦应力法,算出电动机的磁阻转矩。研究了设计参数的影响,例如定子槽宽度,永久槽宽度,气隙长度和磁化方向。通过逐渐减小磁体厚度朝向边缘,形成磁极形状,从而产生具有减少谐波的磁阻转矩的正弦形状,从而降低了振动。本文还提出了两种电机设计技术:定子齿槽口和转子磁极成形的转子磁极偏斜,以及每种方法对输出转矩的影响。分析表明,建议的设计几乎可以消除磁阻转矩,而对输出转矩的损失很小。在永磁直流电动机中,最受欢迎的设计类型是梯形反电动势(BEMF),用于开关直流控制器。结果表明,对于减小了磁阻转矩的电动机,一相通电的输出转矩曲线在质量上等于BEMF曲线。这意味着可以通过电动机的磁建模来设计BEMF曲线,而无需为不同的设计进行昂贵且费时的实验。讨论了各种设计参数对输出转矩和转矩脉动的影响。设计参数包括绕组模式,磁化方向,磁弧长度,极段数和磁极整形。提出了梯形BEMF电动机的新设计,以减少电磁转矩波动。具有减小的电弧长度的磁体步进和磁体边缘整形可显着减少转矩波动,并最大程度地减少最大输出转矩。;使用模拟直流电动机的磁性框架研究电磁源的声噪声。使用有限元分析计算驱动电磁力,并测量由此产生的振动和声音噪声。还使用直流无刷电机测试了纯电磁源的噪声,以确认磁性框架的结果。直流电动机中产生噪声的机制是定子的准静态响应,不仅在基频上而且在交流开关直流电的较高谐波频率上也是如此,这是直流电动机的电流特性。当其中一些谐波接近定子的谐振频率时,会大大加剧噪声的产生。因此,由于较高的谐波可能与定子的谐振频率匹配,所以声噪声高度取决于励磁电流的形状。

著录项

  • 作者

    Hwang, Sangmoon.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Electronics and Electrical.;Engineering Mechanical.;Physics Acoustics.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;声学;机械、仪表工业;
  • 关键词

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