Improvement of Switching Characteristics for an Active Buffer Dual-Active-Bridge AC-DC Converter
Author:
Affiliation:
1. Tokyo University of Marine Science and Technology
2. Nagaoka Power Electronics Co. Ltd.
Publisher
Institute of Electrical Engineers of Japan (IEE Japan)
Link
https://www.jstage.jst.go.jp/article/ieejjia/13/5/13_24000798/_pdf
Reference15 articles.
1. (1) H. Belkamel, H. Kim, and C. Sewan: “Interleaved Totem-Pole ZVS Converter Operating in CCM for Single-Stage Bidirectional AC-DC Conversion With High-Frequency Isolation”, IEEE Trans. on Power Electron., Vol. 36, No. 3, pp. 3486-3495 (2021)
2. (2) Z. Guo and X. Han: “Control Strategy of AC-DC Converter Based on Dual Active Bridge With Minimum Current Stress and Soft Switching”, IEEE Trans. on Power Electron., Vol. 37, No. 9, pp. 10178-10189 (2022)
3. (3) S. Komeda and H. Fujita: “A Power Decoupling Control Method for an Isolated Single-Phase AC-to-DC Converter Based on Direct AC-to-AC Converter Topology”, IEEE Trans. on Power Electron., Vol. 33, No. 11, pp. 9691-9698 (2018)
4. (4) F. Wu, K. Wang, G. Hu, Y. Shen, and S. Luo: “Overview of Single-Stage High-Frequency Isolated AC-DC Converters and Modulation Strategies”, IEEE Trans. on Power Electron., Vol. 38, No. 2, pp. 1583-1598 (2022)
5. (5) S. Komeda and Y. Ohnuma: “An Isolated Single-Phase AC-DC Converter basedon a Dual Active Bridge Converter and an Active Energy Buffer Circuit”, Proc. of the 2021 IEEE 30th Int. Symp. on Ind. Electron. (ISIE), pp. 1-6 (2021)
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