Reverse Current Elimination for Capacitor Voltage Balanced Bidirectional Resonant Converter Using a Bidirectional Switch
- Authors
- Seok, Hwasoo; Kim, Jun-Seok; Kwon, Owon; Kim, Minsung
- Issue Date
- Mar-2020
- Publisher
- IEEE
- Keywords
- Balanced capacitor voltage; reverse current; non-complementary modulation strategy; conduction loss
- Citation
- 2020 THIRTY-FIFTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC 2020), v.2020-March, pp 1044 - 1050
- Pages
- 7
- Indexed
- SCOPUS
- Journal Title
- 2020 THIRTY-FIFTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC 2020)
- Volume
- 2020-March
- Start Page
- 1044
- End Page
- 1050
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/7186
- DOI
- 10.1109/APEC39645.2020.9124478
- ISSN
- 1048-2334
2470-6647
- Abstract
- In this paper, we present an instantaneous reverse current elimination method for a capacitor voltage balanced bidirectional resonant converter operating in the backward operation. A conventional high step-up resonant converter with balanced capacitor voltage may suffer from a significant reverse current due to a large fluctuation of the resonant capacitor voltage in the backward operation. By adding a single bidirectional switch in the circuit, we are able to block the reverse current in the backward operation, which dramatically reduces the reverse current and current stress on the switch. A non-complementary modulation strategy for the bidirectional switch is developed to further reduce the conduction loss, which comes from the use of the bidirectional switch. As a result, the proposed bidirectional converter has high step-up/down capability, high efficiency, and balanced capacitor voltage. A 400-W converter prototype has been implemented to show the performance of the converter.
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- Appears in
Collections - College of Engineering > Department of Electronics and Electrical Engineering > 1. Journal Articles

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