Title :
High-Power-Factor Soft-Switched DC Power Supply System
Author :
Wang, Chien-Ming ; Lin, Chang-Hua ; Yang, Teng-Chieh
Author_Institution :
Dept. of Electr. Eng., Nat. Ilan Univ., Ilan, Taiwan
Abstract :
This paper proposes a dc power supply system to give high power factor and low current distortion on the rectifier side and provide stable dc voltage on the isolated dc/dc converter side. The proposed dc power supply system uses a new zero-voltage-switching (ZVS) strategy to get ZVS function. Besides operating at constant frequency, all semiconductor devices operate at soft switching without additional voltage stress. A significant reduction in the conduction losses is achieved, since the circulating current for the soft-switching flows only through the auxiliary circuit and a minimum number of switching devices are involved in the circulating current path, and the rectifier in the proposed dc power supply system uses a single converter instead of the conventional configuration composed of a four-diode front-end rectifier followed by a boost converter. An average-current-mode control is employed in proposed dc power supply system to detect the transition time and synthesize a suitable low harmonics sinusoidal waveform for the input current. A design example of 1000-W soft-switching single-phase dc power supply system is examined to assess the converter performance.
Keywords :
DC-DC power convertors; electric current control; power factor; power supplies to apparatus; rectifiers; zero voltage switching; ZVS function; auxiliary circuit; average-current-mode control; boost converter; dc voltage; four-diode front-end rectifier; high power factor; isolated dc-dc converter side; low current distortion; low harmonics sinusoidal waveform; power 1000 W; semiconductor devices; soft-switched DC power supply system; zero-voltage-switching strategy; AC-DC power converters; resonant inverters;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2010.2064336