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Abstract
Balancing converters play a pivotal role in bipolar dc grids, and while numerous topologies have been explored, many suffer from drawbacks, such as reliance on bulky passive components, limited soft-switching capabilities, or complex control mechanisms. This article introduces an LC series-resonant balancing converter topology that addresses these issues, featuring smaller passive components, the ability to achieve soft switching across its entire operational range, and simplified control with proper design. By operating in the capacitive region, the converter ensures soft switching for the complete load range, enabling all switches to achieve zero voltage switching (ZVS) turn on. The study reveals that the converter's power flow depends on both the switching frequency (fsw) and the phase shift angle (φ), but notably, when the resonant inductor value is kept sufficiently low, fsw and φ become decoupled, simplifying power flow control. In addition, this article provides detailed design guidelines for the converter's resonant tank and validates the operation and control of the converter through an experimental setup.
Original language | English |
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Pages (from-to) | 4015-4024 |
Number of pages | 10 |
Journal | IEEE Journal of Emerging and Selected Topics in Power Electronics |
Volume | 12 |
Issue number | 4 |
DOIs | |
Publication status | Published - 2024 |
Bibliographical note
Green Open Access added to TU Delft Institutional Repository ‘You share, we take care!’ – Taverne project https://www.openaccess.nl/en/you-share-we-take-careOtherwise as indicated in the copyright section: the publisher is the copyright holder of this work and the author uses the Dutch legislation to make this work public.
Keywords
- dc grid
- DC-DC converter
- modulation
- resonant power converters
- soft switching
- zero voltage switching (ZVS)
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Dive into the research topics of 'Simplified Operation and Control of a Series-Resonant Balancing Converter for Bipolar DC Grids'. Together they form a unique fingerprint.Projects
- 1 Finished
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NEON: New Energy Outlook for the Netherlands
Alkemade, F., Bauer, P., Qin, Z., Chandra Mouli, G. R., Yadav, S., Schmehl, R., Hoekstra, A., Chandra Mouli, G. R., Creatore, A., Renes, R. J., Steinbuch, M., Lurkin, V., Rasouli, S., Bonnema, M., van de Coevering, P., Wijnands, K., Roes, M., van Gool, P., Diercks, G., Bekkers, R., Lavrijssen, S., Hofman , T., Loorbach, D., van Lelyveld , M., Sanaz Kaschny, L., Loomans, N., Silvas, E., Van Woensel, T., Salazar, M., Labee , P., Buchel , S., Beemer , E., Pereira Marca , Y., Joshi, R., Rosero Abad , R. A., Clemente , M., Borsboom , O., Choi , Y., Kiemen , M., Schmidt, H. S., Eijkelhof, D., Maharjan , P., van Druten, E., El Feiaz , A., Paparella , F., Yadav, S., Siadati , S., Khaleghparast , S., Tamis , M., Shekhar , S., Hanselaar , C., Damianakis, N., Aria , D., Reyes Dreke , V., Gong , S., Pouresmaeil , K., Mukherjee , K., de Vries, G., Stolle, K. & Leferink, T.
1/11/20 → 31/10/24
Project: Research