Title :
An Alternative Energy Recovery Clamp Circuit for Full-Bridge PWM Converters With Wide Ranges of Input Voltage
Author :
Cha, Honnyong ; Chen, Lihua ; Ding, Rongjun ; Tang, Qingsong ; Peng, Fang Zheng
Author_Institution :
Dept. of Electr. & Comput. Eng., Michigan State Univ., East Lansing, MI
Abstract :
A full-bridge DC-DC converter employing a diode rectifier in the output experiences a severe voltage overshoot and oscillation problem across the diode rectifier caused by interaction between junction capacitance of the rectifier diode and leakage inductance of the transformer. The pronounced reverse-recovery current of high-power diodes significantly contributes to these issues by increasing power lossand voltage overshoot. Conventional energy recovery clamping circuits suffer from high voltage overshoot if the converter input voltage is wide. In this paper, a novel energy recovery clamp circuit is proposed to overcome this problem. The proposed circuit requires neither active switches nor lossy components. Therefore, the proposed circuit is very promising in high-voltage and high-power applications. Performance of the proposed circuit is verified both theoretically and experimentally with a 70-kW DC-DC converter.
Keywords :
DC-DC power convertors; PWM power convertors; PWM rectifiers; bridge circuits; clamps; clamping circuits; diode rectifier; energy recovery clamp circuit; full-bridge DC-DC converter; full-bridge PWM converters; high-power diodes; power 70 kW; power loss; rectifier diode junction capacitance; reverse-recovery current; transformer leakage inductance; voltage overshoot; Diode rectifier; energy recovery; snubber circuit; voltage oscillation;
Journal_Title :
Power Electronics, IEEE Transactions on
DOI :
10.1109/TPEL.2008.2003131