Influence of Rotor Slot Number on Magnetic Noise in a Squirrel-cage Induction Motor for Traction Applications

Ivan Milažar, D. Žarko
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Abstract

In this paper, the influence of rotor slot number on the magnetic noise of a squirrel cage motor for traction applications is analyzed. The introductory part explains the importance of noise analysis and measurement and gives an overview of the types of noise that occur in this type of motor. The dominance of a particular type of noise depending on the design of the induction motor (number of poles, type of cooling) and the operating range of the motor is also commented. The cause and occurrence of magnetic noise are explained by analytical expressions. Methods are listed that can be used to effectively influence the magnetic noise level at the design stage. The difference between sound pressure level and sound power level is explained as noise level is expressed in both forms. The dominant stress components due to the radial forces acting on the stator teeth and the resulting sound power maxima are calculated for three combinations of stator and rotor slot numbers using the software package MANATEE.
牵引用鼠笼式异步电动机转子槽数对磁噪声的影响
本文分析了牵引用鼠笼式电动机转子槽数对磁噪声的影响。引言部分解释了噪声分析和测量的重要性,并概述了这类电机中出现的噪声类型。根据感应电机的设计(极数,冷却类型)和电机的工作范围,特定类型的噪声的主导地位也进行了评论。用解析式解释了磁噪声的产生原因和产生原因。列出了在设计阶段有效影响磁噪声水平的方法。声压级与声功率级的区别解释为噪声级以两种形式表示。利用软件包MANATEE计算了三种定子和转子槽数组合下,由于作用在定子齿上的径向力而产生的主导应力分量以及由此产生的最大声功率。
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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