Title :
A Design Procedure for Optimizing the LLC Resonant Converter as a Wide Output Range Voltage Source
Author :
Beiranvand, Reza ; Rashidian, Bizhan ; Zolghadri, Mohammad Reza ; Alavi, Seyed Mohammad Hossein
Author_Institution :
Sch. of Electr. Eng., Sharif Univ. of Technol., Tehran, Iran
Abstract :
LLC resonant converter is one of the most suitable circuit topologies that have been introduced for designing constant output voltage switched-mode power supplies. In this paper, a design procedure is introduced for using this converter as a wide output range voltage source. Unlike constant output voltage applications which need small converter inductance ratio and narrow switching frequency variations, for wide output range applications, large values of these parameters are needed simultaneously and should be optimized. Instead of minimizing the components stresses, leading to a great value of the inductance ratio, proper choice of the converter parameters resulting in a smaller inductance ratio has been done. Maximum value of the capacitor in parallel with the power MOSFETs drain-sources has been derived to realize the zero voltage switching operation in the converter inductive region. Soft switching is achieved for all power devices under all operating conditions. A prototype of the converter has been tested for different regulated output voltages (35-165 Vdc) under different loads (0-3 Adc) and input voltages (320-370 Vdc) for using an ion implanter arc power supply, with maximum efficiency value of 94.7%. Experimental results confirm the high performance of the wide output range LLC resonant converter even under the worst case conditions.
Keywords :
capacitors; network synthesis; network topology; power MOSFET; resonant power convertors; switched mode power supplies; switching convertors; zero current switching; zero voltage switching; LLC resonant converter optimization; capacitor; circuit topology; constant output voltage switched-mode power supply design; converter inductance ratio; converter parameter; current 0 A to 3 A; drain-source; efficiency 94.7 percent; ion implanter arc power supply; maximum efficiency value; narrow switching frequency variation; power MOSFET; power device; regulated output voltage; soft switching converter; voltage 320 V to 370 V; voltage 35 V to 165 V; wide output range voltage source; zero voltage switching operation; Frequency conversion; Harmonic analysis; Impedance; Resonant frequency; Switching frequency; Voltage control; Zero voltage switching; LLC resonant converter; switched-mode power supply (SMPS); wide output range; zero current switching (ZCS); zero voltage switching (ZVS);
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2012.2187801