Structure-borne Noise at PWM Excitation using an Extended Field Reconstruction Method and Modal Decomposition

Janez Luznar, J. Slavič, M. Boltežar
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引用次数: 2

Abstract

Pulse-Width Modulation (PWM) represents a carrier-frequency-dependent structural excitation. The PWM’s excitation harmonics are also reflected in the air gap’s electromagnetic forces, the vibration response and the resulting structure-borne noise. The last of these can be numerically predicted with a multiphysics finite-element-analysis (FEA) containing electronic, electromagnetic, mechanical and acoustic field problems. The multiphysics FEA are precise, but computationally inefficient and consequently inadequate for parametric studies. This paper introduces a method for a fast structure-borne noise prediction at PWM excitation. The presented approach contains the Extended Field Reconstruction Method (EFRM) to handle the magnetic saturation and slotting effects in magnetics, and the modal decomposition to couple the electromagnetic and mechanical domains. Finally, the structure-borne sound power level is calculated via the vibration-velocity response. Indeed, this approach demands a pre-calculation of the basis functions and modal parameters from the FEA, but afterwards the effect of the different PWM excitation cases can be evaluated in a few seconds. The proposed method can calculate the structure-borne noise at PWM excitation accurately and is more than 104 times faster than the conventional multiphysics FEA approach.
基于扩展场重构和模态分解的PWM励磁结构噪声分析
脉宽调制(PWM)是一种与载波频率相关的结构激励。PWM的激励谐波也反映在气隙的电磁力、振动响应和由此产生的结构噪声中。最后这些可以用包含电子、电磁、机械和声场问题的多物理场有限元分析(FEA)进行数值预测。多物理场有限元分析是精确的,但计算效率低,因此不适合参数研究。本文介绍了一种快速预测PWM激励下结构噪声的方法。该方法包含了扩展场重构法(EFRM)和模态分解,前者用于处理磁学中的磁饱和和槽效应,后者用于耦合电磁域和力学域。最后,通过振动-速度响应计算结构声功率级。实际上,这种方法需要从有限元分析中预先计算基函数和模态参数,但随后可以在几秒钟内评估不同PWM激励情况的效果。该方法能够准确地计算PWM激励下的结构噪声,比传统的多物理场有限元分析方法快104倍以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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