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Highly Efficient and Cost-Effective Dual Quasi-Resonant Bidirectional DC/DC Converter

Authors
Raheem, HamidWagaye, Tsegaab AlemayehuJung, Jin-WooKim, Minsung
Issue Date
Dec-2024
Publisher
IEEE
Keywords
Voltage; Switches; Inductors; High-voltage techniques; Capacitors; Transformers; Modulation; Active-clamp converter; high-conversion ratio; high efficiency; low cost; new modulation technique; wide-voltage range
Citation
IEEE Transactions on Industrial Electronics, v.71, no.12, pp 15618 - 15632
Pages
15
Indexed
SCIE
SCOPUS
Journal Title
IEEE Transactions on Industrial Electronics
Volume
71
Number
12
Start Page
15618
End Page
15632
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/21851
DOI
10.1109/TIE.2024.3384579
ISSN
0278-0046
1557-9948
Abstract
This article proposes a bidirectional dual quasi-resonant dc/dc converter (BQRC) that aims to achieve high efficiency and cost-effectiveness with a high-conversion ratio. When transferring the power in the backward direction, the existing converter with conventional switching modulation does not work because single-diode rectification at the primary side disrupts the expected power flow mechanism. To solve this problem, the diagonal pairs of primary-side switches and secondary-side bidirectional switches were modulated complementarily with a fixed duty ratio of 0.5 and the secondary-side half-bridge switches with a variable duty ratio. This approach enables power delivery in the backward direction while achieving a high-conversion ratio, low-component count, and almost zero voltage switching turn-off, which makes the converter highly efficient and cost-effective. Furthermore, in this topology, nomagnetizing current flows through the external resonant inductor during backward operation, so the core size of the resonant inductor can be reduced. Consequently, even though the primary-side and secondary-side circuit structures differ, symmetric operations are achieved for power flow in both directions. To demonstrate the viability of this approach, a 400-W prototype was designed and tested, capable of converting a 40-60-V input voltage to a 380-V output.
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