DocumentCode :
1489678
Title :
A novel prediction method of acoustic magnetic noise based on induction motor´s NHCC function
Author :
Kaku, Bin ; Miyashita, Ichiro ; SONE, Satoru
Author_Institution :
Lab. of Tech. Res., Toyo Electr. Manuf. Co. Ltd., Kanagawaken, Japan
Volume :
46
Issue :
2
fYear :
1999
fDate :
4/1/1999 12:00:00 AM
Firstpage :
398
Lastpage :
406
Abstract :
When an induction motor is driven by a pulsewidth modulation (PWM) inverter, acoustic magnetic noise caused by harmonics of the induction motor input is a serious environmental problem. In this paper, a novel prediction method of acoustic magnetic noise is proposed. Acoustic magnetic noise emitted from an induction motor is considered as the function of harmonic components of induction motor current. The acoustic magnetic noise versus harmonic current characteristic (NHCC) function is defined. This NHCC function describes the response of acoustic magnetic noise to a single-frequency harmonic current. Based on the NHCC function, acoustic magnetic noise can be predicted very easily and accurately, simply by the calculation of harmonic components of the induction motor current. By making use of this method, the difficulties of the conventional prediction method, such as the complex calculations of magnetic force, mechanical resonant frequencies, and sound radiation efficiency can be avoided. This novel method can be used as a tool for environmental noise management and evaluation of low-acoustic magnetic noise characteristics of different inverter PWM control methods
Keywords :
PWM invertors; acoustic noise; harmonic analysis; induction motors; magnetic noise; noise abatement; power conversion harmonics; PWM inverter; acoustic magnetic noise prediction; current harmonics; environmental noise management; harmonic components; harmonic current characteristic; induction motor; induction motor current; induction motor input; low-acoustic magnetic noise; pulsewidth modulation inverter; single-frequency harmonic current; Acoustic emission; Acoustic pulses; Environmental factors; Induction motors; Magnetic forces; Magnetic modulators; Magnetic noise; Prediction methods; Pulse inverters; Pulse width modulation inverters;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/41.753779
Filename :
753779
Link To Document :
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