학술논문

Design and Implementation of an Interleaved High Efficiency and High Voltage Gain Converter With Minimum Switch Count for Renewable Energy Integration
Document Type
Periodical
Source
IEEE Transactions on Industrial Electronics IEEE Trans. Ind. Electron. Industrial Electronics, IEEE Transactions on. 71(6):5863-5870 Jun, 2024
Subject
Power, Energy and Industry Applications
Signal Processing and Analysis
Communication, Networking and Broadcast Technologies
Voltage
Switches
Capacitors
Transformers
Windings
Inductors
Semiconductor diodes
High step-up converters
interleaved converters
soft-switching
solar system
Language
ISSN
0278-0046
1557-9948
Abstract
This article proposes a new nonisolated, interleaved, high step-up, soft-switching converter for renewable energy applications. The proposed converter is a boost topology designed to have a continuous input current with low ripple. It employs no auxiliary circuit or extra switches to achieve soft-switching, and the voltage stress on the power switches is reduced. By using the transformer's leakage inductance, the power diodes’ reverse recovery current problem is tackled without the need for an extra snubber circuit. The proposed converter has been analyzed and compared with similar topologies. Experimental results from a 400-W prototype with a 30–300 V conversion ratio are presented, demonstrating the effectiveness of the proposed converter, which is well-suited for use with renewable energy sources.