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정지훈

Jung, Jee-Hoon
Advanced Power Interface & Power Electronics Lab.
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Enhanced four-port dual-active-bridge converter employing power decoupling capability for DC microgrid islanding mode operation

Author(s)
Heo, Kyung-WookYun, Chang-WooJung, Gwon-GyoLee, Jun-SukKim, Ho-SungJung, Jee-Hoon
Issued Date
2024-02
DOI
10.1007/s43236-023-00712-1
URI
https://scholarworks.unist.ac.kr/handle/201301/68055
Citation
JOURNAL OF POWER ELECTRONICS, v.24, pp.171 - 180
Abstract
Multiport DC-DC converters based on a dual-active-bridge (DAB) topology have attracted attention due to their high power density and bidirectional power transfer capability in DC microgrid systems. In addition, connectivity is high for various distributed resources (DRs). However, power coupling among ports magnetically connected by single or multiple transformers induces poor power control and voltage regulation performance. To mitigate these technical issues, an enhanced power decoupling method for a four-port DAB converter is proposed, which does not have supplementary power decoupling algorithms under the grid-connected mode and islanding mode operations of a DC microgrid system. In addition, a modular structure can be applied to individually connect a system with various loads. Finally, a 3-kW prototype four-port DAB converter is implemented to verify the validity and performance of the proposed method.
Publisher
SPRINGER HEIDELBERG
ISSN
1598-2092
Keyword (Author)
DC microgridGrid-connected modeIslanding modePower decouplingDual-active-bridgeMultiport converter
Keyword
SEAMLESS TRANSFER

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