DocumentCode :
3239651
Title :
A novel analysis of full bridge series-parallel resonant inverter for high frequency application
Author :
Arumugam, S. ; Ramareddy, S.
Author_Institution :
Bharath Univ., Chennai, India
fYear :
2011
fDate :
1-3 Dec. 2011
Firstpage :
59
Lastpage :
64
Abstract :
This paper proposes a high efficiency full bridge series-parallel resonant inverter for high frequency applications (Induction Heating) by using asymmetrical voltage cancellation control. The operating frequency is automatically adjusted to maintain a small constant lagging phase angle under load parameter variation. The output power is controlled using the asymmetrical voltage cancellation technique. The full bridge series-parallel resonant tank is designed without the use of output transformer. This results in an increase of the net efficiency of the induction heating system. This system has an advantage like reduced volume and switching losses. The circuit model is developed for the closed loop system and they are used for simulation studies. The simulation results of closed loop systems are presented. Experimental results are compared with simulation results.
Keywords :
closed loop systems; induction heating; power control; resonant invertors; voltage control; asymmetrical voltage cancellation control; closed loop system; full-bridge series-parallel resonant inverter; full-bridge series-parallel resonant tank; high-frequency application; induction heating system; lagging phase angle; load parameter variation; operating frequency; power control; Closed loop systems; Power generation; Resonant frequency; Resonant inverters; Switches; Voltage control; High frequency; Induction Heating; Series parallel resonant inverter; asymmetrical voltage cancellation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Innovative Smart Grid Technologies - India (ISGT India), 2011 IEEE PES
Conference_Location :
Kollam, Kerala
Print_ISBN :
978-1-4673-0316-3
Type :
conf
DOI :
10.1109/ISET-India.2011.6145356
Filename :
6145356
Link To Document :
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