Title :
PWM/PDM dual mode controlled soft switching multi resonant high-frequency inverter
Author :
Fathy, Khairy ; Miura, Yuta ; Yasui, Kenji ; Hirota, Izuo ; Iwai, Toshiaki ; Omori, Hideki ; Lee, Hyun Woo ; Nakaoka, Mutsuo
Author_Institution :
Kyungnam Univ.
Abstract :
In this paper, a novel type auxiliary active resonant capacitor snubber assisted zero current soft switching pulse modulation single-ended push pull (SEPP) series load resonant inverter with two auxiliary resonant lossless inductor snubbers is proposed for consumer high-frequency induction heating (IH) appliances. Its operating principle in steady state is described by using each mode equivalent circuits. The new multi resonant high-frequency inverter can regulate its output power under a condition of a constant frequency zero current soft switching (ZCS) commutation principle on the basis of asymmetrical PWM control scheme. The consumer brand-new IH products using proposed ZCS-PWM series load resonant SEPP high-frequency inverter is evaluated and discussed as compared with conventional high-frequency inverter on the basis of experimental results. In order to extend ZCS operation ranges under a low power setting PWM, the pulse density modulation (PDM) strategy is demonstrated for high frequency multi resonant inverter. Its practical effectiveness is substantially proved from an application point of view
Keywords :
PWM invertors; capacitor switching; domestic appliances; equivalent circuits; induction heating; resonant invertors; snubbers; switching convertors; zero current switching; PWM control scheme; ZCS; auxiliary active resonant capacitor snubber; auxiliary resonant lossless inductor snubbers; dual mode control; equivalent circuits; induction heating appliances; pulse density modulation; single-ended push pull series load resonant inverter; soft switching multiresonant high-frequency inverter; zero current soft switching pulse modulation; Active inductors; Capacitors; Home appliances; Pulse modulation; Pulse width modulation inverters; Resonance; Resonant inverters; Snubbers; Steady-state; Zero current switching; Asymmetrical PWM control scheme; Consumer induction heater; Dual mode PWM and PDM control scheme; High frequency inverter; Lossless inductor snubbers; Series capacitor compensated resonant load; Zero current soft switching;
Conference_Titel :
Industrial Technology, 2005. ICIT 2005. IEEE International Conference on
Conference_Location :
Hong Kong
Print_ISBN :
0-7803-9484-4
DOI :
10.1109/ICIT.2005.1600863