
High‐efficiency full‐range soft‐switching full‐bridge high‐frequency‐link inverter
Author(s) -
Guo Shilin,
Su Jianhui,
Chen Xuejian,
Yu Xiang
Publication year - 2016
Publication title -
electronics letters
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.375
H-Index - 146
ISSN - 1350-911X
DOI - 10.1049/el.2016.2779
Subject(s) - snubber , inductor , transformer , inverter , cycloconverter , commutation , resonant inverter , capacitance , voltage , electronic engineering , switching frequency , electrical engineering , leakage inductance , capacitor , parasitic capacitance , computer science , engineering , physics , electrode , quantum mechanics
A novel full‐range soft‐switching full‐bridge (FSFB) cycloconverter‐type high‐frequency‐link inverter (CHFLI) with active snubber network is proposed. By adding an auxiliary inductor in primary‐side DC/AC converter and adopting centre‐tapped transformer structure, the proposed FSFB‐CHFLI achieves zero voltage switching (ZVS) for all switches under different operating conditions from light load to rated load, which benefits with high efficiency and high switching frequency. The secondary‐side active snubber network is utilised to recycle leakage inductor energy and suppress voltage spikes caused by the resonance of the leakage inductor and the parasitic capacitance of switch. The commutation overlap strategy is adopted to guarantee complete ZVS turn‐on and ZVS turn‐off of bidirectional switches. Experimental results of a high efficient and high switching frequency (200 kHZ) prototype are presented to verify the analysis results of the proposed FSFB‐CHFLI.