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논문 기본 정보

자료유형
학술대회자료
저자정보
Hsuan-Yu Yueh (National Taiwan University of Science and Technology) Jing-Yuan Lin (National Taiwan University of Science and Technology) Haung-Jen Chiu (National Taiwan University of Science and Technology) Chen-Yen Chu (National Taiwan University of Science and Technology) Yu-Chen Chang (National Taiwan University of Science and Technology) Sih-Yi Lee (National Taiwan University of Science and Technology)
저널정보
전력전자학회 ICPE(ISPE)논문집 ICPE 2019-ECCE Asia
발행연도
2019.5
수록면
1,904 - 1,909 (6page)

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A Three-Level Bi-Directional Half-Bridge CLLC Resonant DC-DC converter for DC micro-grid application is studied on this paper, which uses dual resonant tanks to achieve wide range voltage regulation and meanwhile employs bi-directional capability. All power switches on this converter can achieve ZVS function at the whole load and the voltage stress on all power switches at both sides can be clamped at half of input voltage and output voltage since the three-level circuit architecture using the proposed synchronous rectifier (SR) control, therefore, the voltage stresses of the transformer, resonant tanks, power switches and other components are only half compared with conventional half-bridge CLLC resonant converter, the downsizing rated of components selection can be more flexible. Finally, the laboratory prototype is built to verify the performance of voltage balancing on input/output capacitor, voltage stress on switches and efficiency, the measured efficiency can be up to 95.6% over different load conditions.

목차

Abstract
I. INTRODUCTION
II. ARCHITECTURE OF THREE-LEVEL CLLC RESONANT CONVERTER
III. OPERATION PRINCIPLE OF THREE-LEVEL CLLC RESONANT CONVERTER
IV. EXPERIMENTAL RESULTS
V. CONCLUSION
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