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Interleaved High Step-Up Current Sharing Converter with Coupled Inductors
Journal article   Open access   Peer reviewed

Interleaved High Step-Up Current Sharing Converter with Coupled Inductors

Liangzong He, Zhile Lin, Qingyang Tan, Fengwang Lu, Tao Zeng and Qing Yang Tan
Electronics (Basel), Vol.10(4), pp.436-14
10/02/2021

Abstract

Computer Science Computer Science, Information Systems Engineering Engineering, Electrical & Electronic Physical Sciences Physics Physics, Applied Science & Technology Technology
An interleaved high-step-up current sharing DC-DC converter with coupled inductors is proposed in this paper. The operation principle and property of this converter are analyzed. The ripple of the input current in the proposed converter is decreased significantly by using the two-phase parallel interleaved input. The voltage gain is extended and the switch voltage stress is reduced by the coupled inductors. The leakage inductance of the coupled inductors reduces the reverse-recovery problem of the output diode, resulting in the reduction of reverse-recovery losses. As there are two interleaved phases in the proposed converter, the third winding of each coupled inductor is embedded in another phase. With this design, when the leakage inductance or duty cycle is asymmetrical, the current sharing performance is still positive. Consequently, the new topology is very suitable for applications to occasions with low voltage input and high voltage output, such as the fuel cell power system. Finally, the performance of this topological circuit is verified by a prototype with 500 W output.
url
https://doi.org/10.3390/electronics10040436View
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