Title :
A Bridgeless BHB ZVS-PWM AC–AC Converter for High-Frequency Induction Heating Applications
Author :
Mishima, Tomokazu ; Nakagawa, Yuki ; Nakaoka, Mutsuo
Author_Institution :
Kobe Univ., Kobe, Japan
Abstract :
A new prototype of a zero voltage soft-switching (ZVS) utility frequency ac to high-frequency ac resonant power converter for induction heating (IH) applications is presented in this paper. The series resonant ac-ac converter proposed herein can process the frequency conversion without any diode bridge rectifier, thereby reducing the relevant conduction power losses. In addition, power factor correction (PFC) can be naturally achieved by the inductor-based boost half-bridge circuit with the nonsmoothed dc-link. The operation principle together with an IH load power regulation scheme is described, and the converter performances including ZVS operations and PFC are demonstrated in an experiment with a 3.0-kW-30-kHz prototype by comparing it with the previously developed converter. Finally, the feasibility of the proposed ac-ac converter is evaluated from a practical point of view.
Keywords :
AC-AC power convertors; PWM power convertors; induction heating; power factor correction; zero voltage switching; bridgeless BHB ZVS-PWM AC-AC converter; diode bridge rectifier; frequency 30 kHz; high-frequency AC resonant power converter; induction heating; inductor-based boost half-bridge circuit; power 3.0 kW; power factor correction; power regulation; zero voltage soft-switching; AC-AC converters; Bridge circuits; Capacitors; Distributed Bragg reflectors; Inverters; Zero voltage switching; Boost half-bridge (BHB); Utility-frequency (UF)–high frequency (HF) ac-ac power converter; boost half-bridge (BHB); diode full-bridge rectifier-less (bridgeless); induction heating (IH); non-smoothed dc (NSDC)-link; power factor correction (PFC); pulse-widthmodulation (PWM); pulsewidth modulation (PWM); utility-frequency (UF)???high-frequency (HF) ac???ac power converter; zero voltage soft-switching (ZVS); zero-voltage soft-switching (ZVS);
Journal_Title :
Industry Applications, IEEE Transactions on
DOI :
10.1109/TIA.2015.2409177