Title :
Acoustic Noise Characterization of Space-Vector Modulated Induction Motor Drives—An Experimental Approach
Author :
Binojkumar, A.C. ; Saritha, B. ; Narayanan, G.
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Sci., Bangalore, India
Abstract :
This paper presents an experimental procedure to determine the acoustic and vibration behavior of an inverter-fed induction motor based on measurements of the current spectrum, acoustic noise spectrum, overall noise in dB, and overall A-weighted noise in dBA. Measurements are carried out on space-vector modulated 8-hp and 3-hp induction motor drives over a range of carrier frequencies at different modulation frequencies. The experimental data help to distinguish between regions of high and low acoustic noise levels. The measurements also bring out the impact of carrier frequency on the acoustic noise. The sensitivity of the overall noise to carrier frequency is indicative of the relative dominance of the high-frequency electromagnetic noise over mechanical and aerodynamic components of noise. Based on the measured current and acoustic noise spectra, the ratio of dynamic deflection on the stator surface to the product of fundamental and harmonic current amplitudes is obtained at each operating point. The variation of this ratio of deflection to current product with carrier frequency indicates the resonant frequency clearly and also gives a measure of the amplification of vibration at frequencies close to the resonant frequency. This ratio is useful to predict the magnitude of acoustic noise corresponding to significant time-harmonic currents flowing in the stator winding.
Keywords :
acoustic noise; induction motor drives; invertors; stators; vibrations; A-weighted noise; acoustic noise characterization; acoustic noise levels; acoustic noise spectrum; aerodynamic components; carrier frequency; current spectrum measurements; fundamental current amplitudes; harmonic current amplitudes; high-frequency electromagnetic noise; inverter-fed induction motor; mechanical components; modulation frequency; power 3 hp; power 8 hp; resonant frequency; space-vector modulated induction motor drives; stator surface; stator winding; vibration behavior; Acoustic measurements; Acoustic noise; Current measurement; Frequency measurement; Harmonic analysis; Noise; Stator windings; Acoustic noise; induction motor; prediction of noise; selection of carrier frequency; space vector modulation; stator deflection; stator vibration; vibrational behavior;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2014.2374557