DocumentCode :
268107
Title :
Class-D/DE Dual-Mode-Operation Resonant Converter for Improved-Efficiency Domestic Induction Heating System
Author :
Sarnago, H. ; Lucía, Óscar ; Mediano, A. ; Burdío, José M.
Author_Institution :
Dept. of Electron. Eng. & Commun., Univ. of Zaragoza, Zaragoza, Spain
Volume :
28
Issue :
3
fYear :
2013
fDate :
Mar-13
Firstpage :
1274
Lastpage :
1285
Abstract :
Induction heating (IH) technology is nowadays widely present in domestic appliances because of its cleanness, high efficiency, and faster heating process. All of these advantages are due to its heating process, where the pot is directly heated by the induced currents generated with a varying magnetic field. As a result, the glass where the pot is supported is not directly heated and, consequently, efficiency and heating times are improved. IH systems are based on dc-link inverters to generate the required alternating current to feed the inductor. Usually, resonant converters are used to achieve higher efficiencies and power densities. In such systems, the maximum output power and efficiency are achieved at the resonant frequency, and the switching frequency is increased to reduce the output power. As a consequence, in these converters, the efficiency is also reduced in the low-medium output power range. This paper proposes the use of the half-bridge inverter in two operating modes to achieve higher efficiency in a wide output power range. The power converter topology can be reconfigured by changing the resonant capacitors through electromechanical relays. As a consequence, the entire efficiency of the cooking process is improved with a cost-effective procedure.
Keywords :
domestic appliances; induction heating; resonant power convertors; IH technology; class-D-DE dual-mode-operation resonant converter; cooking process; dc-link inverters; domestic appliances; electromechanical relays; half-bridge inverter; heating process; improved-efficiency domestic induction heating system; magnetic field; power converter topology; power density; resonant capacitors; resonant frequency; switching frequency; Capacitors; Electromagnetic heating; Inverters; Power generation; Snubbers; Switches; Transistors; Induction heating (IH); inverter; resonant power conversion;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2012.2206405
Filename :
6227365
Link To Document :
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