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High Step-Up Dual-Switch X-Source DC-DC Converters Integrating Various Capacitor-Winding-Diode Voltage-Double Technology

Ji, Yuliang; Geng, Lina; Liu, Hongchen; wheeler, Pat

High Step-Up Dual-Switch X-Source DC-DC Converters Integrating Various Capacitor-Winding-Diode Voltage-Double Technology Thumbnail


Authors

Yuliang Ji

Lina Geng

Hongchen Liu



Abstract

In this article, a new class of high step-up dual-switch X-source dc–dc converters integrating various capacitor-winding-diode voltage-double technology is presented, which are parallel-winding dual-switch X-source dc–dc converters, series-winding dual-switch X-source dc–dc converters, and flipped parallel-winding dual-switch X-source dc–dc converters. According to different winding homonymous end connections, voltage gains and turn ratios of proposed converters have two relations: inversely proportional relations and positive proportional relations. Also, all proposed topologies can produce the higher voltage gain, and own the lower voltage stresses. Operation principles, math derivations, and performance advantages of the proposed converters are analyzed in detail. Finally, the experimental prototype is built to demonstrate the operational feasibility of the proposed converter.

Citation

Ji, Y., Geng, L., Liu, H., & wheeler, P. (2024). High Step-Up Dual-Switch X-Source DC-DC Converters Integrating Various Capacitor-Winding-Diode Voltage-Double Technology. IEEE Transactions on Industrial Electronics, 71(5), 4607-4617. https://doi.org/10.1109/tie.2023.3283696

Journal Article Type Article
Acceptance Date Jun 12, 2023
Online Publication Date Jun 12, 2023
Publication Date 2024-05
Deposit Date Feb 6, 2024
Publicly Available Date Feb 7, 2024
Journal IEEE Transactions on Industrial Electronics
Print ISSN 0278-0046
Electronic ISSN 1557-9948
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
Volume 71
Issue 5
Pages 4607-4617
DOI https://doi.org/10.1109/tie.2023.3283696
Keywords Electrical and Electronic Engineering; Control and Systems Engineering
Public URL https://nottingham-repository.worktribe.com/output/21917702
Publisher URL https://ieeexplore.ieee.org/document/10149198

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