DocumentCode :
2503696
Title :
Space vector based hybrid PWM algorithm for vector controlled induction motor drives for reduced current ripple and acoustical noise
Author :
Satyanarayana, K. ; Reddy, T. Brahmananda ; Amarnath, J. ; Rao, A. Kailasa
Author_Institution :
E.E.E Dept., Pragati Eng. Coll., Surampalem, India
fYear :
2010
fDate :
20-23 Dec. 2010
Firstpage :
1
Lastpage :
6
Abstract :
This paper presents a simplified hybrid pulse width modulation (HPWM) algorithm for vector controlled induction motor drive to reduce the steady state ripple in current and acoustical noise. The proposed HPWM algorithm is designed based on the notion of current ripple. This algorithm uses various bus-clamping PWM sequences along with the conventional space vector PWM (CSVPWM) algorithm. Modulation index and duty cycle dependent expression for rms value of the stator current ripple over a sampling interval is calculated and illustrated graphically. The, proposed HPWM algorithm selects a suitable sequence which results in lowest rms current ripple over a given sampling time interval. To validate the proposed HPWM algorithm, numerical simulation studies have been carried out and the results show the effectiveness of the proposed algorithm.
Keywords :
induction motor drives; machine vector control; pulse width modulation; stators; CSVPWM algorithm; acoustical noise reduction; bus-clamping PWM sequences; conventional space vector PWM algorithm; current ripple reduction; duty cycle dependent expression; modulation index; simplified hybrid pulsewidth modulation algorithm; space vector-based hybrid PWM algorithm; stator current ripple; steady state ripple; vector controlled induction motor drives; Educational institutions; Noise; Space vector pulse width modulation; Switches; Bus-clamping PWM; SVPWM; hybrid PWM; vector control;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Electronics, Drives and Energy Systems (PEDES) & 2010 Power India, 2010 Joint International Conference on
Conference_Location :
New Delhi
Print_ISBN :
978-1-4244-7782-1
Type :
conf
DOI :
10.1109/PEDES.2010.5712472
Filename :
5712472
Link To Document :
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