单级感应加热高频串联负载谐振ZVS-PWM逆变器,有源滤波pfc整流器工作在一个二极管导通和ZCS换相

H. Sugimura, B. Saha, Soon-Kurl Kwon, S. Hideki, S. Sumiyoshi, H. Omori, M. Nakaoka
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引用次数: 5

摘要

本文介绍了一种利用ZCS-PFC变换器导通全桥1型二极管的新型半桥ZVS-PWM高频逆变器。该高频逆变器由工作在单二极管传导桥电路的无源PFC变换器和不对称ZVS-PWM高频谐振逆变器组成,没有笨重的用于升压直流电压平滑的电解电容级。此外,该高频谐振逆变器在带升压电感的二极管桥式整流器中只有一个二极管导通模式。采用开关模式等效电路描述了串联负载谐振高频逆变器的工作原理,并模拟了工作电压和电流波形。本文通过仿真分析,提出了在二极管桥部分实现一个二极管同时导通的高频逆变器设计电路参数。在仿真分析的基础上,通过FFT分析阐述了该ZVS-PWM高频逆变器的工作特性,包括UFAC- hfac功率调节特性、软开关工作范围、UFAC侧功率因数特性和UFAC边线电流谐波特性。原则上,在仿真结果的基础上,评估和证明了该ufa - hfac直接功率频率转换器用于消费高频IH电器的有效性。
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A single stage induction heating high frequency series load resonant ZVS-PWM inverter with active filtering pfc rectifier operating at one diode conduction and ZCS commutation
This paper presents newly developed half bridge ZVS-PWM high frequency inverter using ZCS-PFC converter conducting full bridge 1 diode. This high-frequency inverter is composed of a passive PFC converter operating at one diode conducting bridge circuit and asymmetrical ZVS-PWM high frequency resonant inverter without the bulky electrolytic capacitor stage for boosted DC voltage smoothing. In addition, this proposed high-frequency resonant inverter has only one diode conducting mode in the diode bridge rectifier with boost inductor. The operating principle of the proposed series load resonant high frequency inverter is described by using the switching mode equivalent circuits in addition to the simulated operating voltage and current waveforms. The circuit parameters of proposed high frequency inverter design to achieve one diode conduction at the same time at diode bridge part by simulation analysis in this paper. The operating performances of this proposed ZVS-PWM high-frequency inverter are also illustrated on the basis of simulation analysis which includes its UFAC-to-HFAC power regulation characteristics, soft switching operating range, UFAC side power factor characteristics and UFAC side line current harmonics characteristics by FFT analysis. In principle, the effectiveness of this UFAC-to-HFAC direct power frequency converter using IGBTs for consumer high-frequency IH appliances is evaluated and proved on the basis of simulation results.
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