Title :
A two-output series-resonant inverter for induction-heating cooking appliances
Author :
Burdío, José M. ; Monterde, Fernando ; García, José R. ; Barragán, Luis A. ; Martínez, Abelardo
Author_Institution :
Departamento de Ingenieria Electronica, Zaragoza Univ., Spain
fDate :
7/1/2005 12:00:00 AM
Abstract :
Multiple-burner induction-heating cooking appliances are suitable for using multiple-output inverters. Some common approaches use several single-output inverters or a single-output inverter multiplexing the loads along the time periodically. By specifying a two-output series-resonant high-frequency inverter, a new inverter is obtained fulfilling the requirements. The synthesized converter can be considered as a two-output extension of a full-bridge topology. It allows the control of the two outputs, simultaneously and independently, up to their rated powers saving component count compared with the two-converter solution and providing a higher utilization of electronics. To verify theoretical predictions, the proposed converter is designed and tested experimentally in an induction-heating appliance prototype. A fixed-frequency control strategy is digitally implemented with good final performances for the application, including ZVS operation for active devices and a quick heating function. Although the work is focused on low-power induction heating, it can be probably useful for other power electronic applications.
Keywords :
digital control; domestic appliances; frequency control; induction heating; invertors; network topology; power engineering computing; resonant power convertors; zero voltage switching; ZVS operation; fixed-frequency control strategy; full-bridge topology; induction heating cooking appliances; low-power induction heating appliance; multiple-output inverters; single-output inverter multiplexing; two-converter solution; two-output series-resonant inverter; Circuit topology; Digital control; Heating; Home appliances; Inverters; Power electronics; Prototypes; Temperature control; Testing; Zero voltage switching; Asymmetrical control; converter synthesis; induction-heating cooking appliances; multiple-output inverters; series-resonant inverters;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2005.850925