Performance of Induction Heating Power Supply Using Dual Control Mode Pulse-width Modulation–Pulse-density Modulation High-frequency Inverter

2014 ◽  
Vol 43 (2) ◽  
pp. 157-166 ◽  
Author(s):  
Khairy Sayed ◽  
Mutsuo Nakaoka
2010 ◽  
Vol 130 (10) ◽  
pp. 1123-1130
Author(s):  
Takanori Isobe ◽  
Tadayuki Kitahara ◽  
Kazuhiko Fukutani ◽  
Ryuichi Shimada

2014 ◽  
Vol 912-914 ◽  
pp. 927-930
Author(s):  
Qiang Jiang

In this paper, a HV and HF switch power supply was designed, which was controlled through a single chip microcomputer, also the MOSFET was used as the switch power tube. The PWM (pulse width modulation) technique and half-bridge inverter topology have been used to invert AC into the DC that can be adjust from 0V~25KV and the operating frequency is 35KHz, Through the simulation with the Saber software and practical use, the feasibility of the scheme and the correctness of the design have been verified.


2013 ◽  
Vol 768 ◽  
pp. 404-410
Author(s):  
Nagarajan Booma ◽  
S. Rama Reddy ◽  
M. Beryl

This paper discusses the design and simulation of pulse width modulated based circuit for induction melting application. This high frequency inverter topology have the practical advantages of energy saving, clean environment, high output power due to low switching losses, less electromagnetic noise and low total harmonic distortion. This two stage power converter has single phase full bridge rectifier, DC filter, zero voltage switching pulse width modulation controlled high frequency inverter. In this work, the steady state operation and control strategy of pulse width modulated high frequency inverter is analyzed. In order to achieve energy efficiency switching losses are reduced by operating the inverter above resonance frequency. Input side supply harmonics is also reduced using EMI filter. The simulation of the designed high frequency power supply is carried out at a frequency of 20 kHz using MATLAB simulink tool. Simulation results proof the energy saving due to reduction in switching losses of the presented control strategy and reduction in harmonic distortion of the presented power supply for induction heating load.


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