Title :
Analysis and Design of a High Step-up Current-Fed Multiresonant DC–DC Converter With Low Circulating Energy and Zero-Current Switching for All Active Switches
Author :
Yuan, Bo ; Yang, Xu ; Zeng, Xiangjun ; Duan, Jason ; Zhai, Jerry ; Li, Donghao
Author_Institution :
State Key Lab. of Electr. Insulation & Power Equip., Xi´´an Jiaotong Univ., Xi´´an, China
Abstract :
A high-efficiency high step-up current-fed multiresonant converter (CFMRC) is proposed for interfacing the sustainable power sources, such as PV panels and fuel cells, which are characterized by low-voltage high-current output and have strict current ripple requirement. The proposed converter has the features of low input current ripple, low circulating energy, achieving zero-current switching (ZCS) for all active switches, and common ground driving. In order to further improve the efficiency and the power density of the CFMRC, coupled inductor and voltage doubler are applied to the two input inductors and the output rectifier, respectively. The operation principle of the CFMRC is introduced. Its dc voltage gain and the ZCS conditions of both the primary switches and the secondary rectifier are also derived based on the steady-state analysis. Finally, a design guideline is given. The theoretical analysis of the CFMRC was verified on a 150-W prototype. An average efficiency of 95.9% was achieved over the entire maximum power point tracking range (23-38 V), with a 350-V output at full load.
Keywords :
DC-DC power convertors; inductors; maximum power point trackers; rectifiers; resonant power convertors; switching convertors; zero current switching; CFMRC; DC voltage gain; PV panel; ZCS condition; coupled inductor; fuel cell; high efficiency high step-up current-fed multiresonant DC-DC converter; input current ripple requirement; low circulating energy; low voltage high current output; maximum power point tracking; output rectifier; power 150 W; power density; power source; secondary rectifier; steady-state analysis; voltage 23 V to 38 V; voltage 350 V; voltage doubler; zero current switching; Capacitance; Capacitors; Inductance; Inductors; Rectifiers; Switches; Zero current switching; Coupled inductor; current-fed multiresonant converter (CFMRC); step-up converter; voltage doubler; zero-current switching (ZCS);
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2011.2158036