DocumentCode
3240286
Title
Implementation of FM-ZCS-Quasi Resonant Converter Fed DC Servo Drive
Author
Rao, K. Narasimha ; Reddy, V. C Veera
Author_Institution
BMS Coll. of Eng., Bangalore, India
fYear
2009
fDate
16-18 Dec. 2009
Firstpage
709
Lastpage
715
Abstract
This paper deals with the implementation of FM-ZCS-QRC fed Dc servo drive using micro controller. The salient feature of QRC is that the switching devices can be either switched on at zero voltage or switched off at zero current, so that switching losses are zero ideally. Switching stresses are low, volumes are low and power density is high. This property imparts high efficiency and high power density to the converters. The output of QRC is regulated by varying the switching frequency of the converter. Hence it is called Frequency modulated Zero current/zero voltage switching quasi resonant converter. The present work deals with simulation and implementation of DC Servo motor fed from ZCS-QRC. Simulation results show that the ZCS-QRC´s have low total harmonic distortion. The ZCS-QRC operating in half wave and full wave modes are simulated and implemented successfully. The experimental results are compared with the simulation results.
Keywords
DC motor drives; harmonic distortion; resonant power convertors; servomotors; switching convertors; zero current switching; zero voltage switching; DC Servo motor; FM-ZCS-quasi resonant converter; microcontroller; switching frequency; switching losses; total harmonic distortion; zero current switching quasi resonant converter; zero voltage switching quasi resonant converter; DC motors; Frequency conversion; Frequency modulation; Resonance; Servomechanisms; Stress; Switching converters; Switching frequency; Switching loss; Zero voltage switching;
fLanguage
English
Publisher
ieee
Conference_Titel
Emerging Trends in Engineering and Technology (ICETET), 2009 2nd International Conference on
Conference_Location
Nagpur
Print_ISBN
978-1-4244-5250-7
Electronic_ISBN
978-0-7695-3884-6
Type
conf
DOI
10.1109/ICETET.2009.123
Filename
5395076
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