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Design and Implementation of Three-Winding Coupled Inductor Applied in High Step-Up DC/DC Converter Combined with Voltage Multipliers

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journal contribution
posted on 2025-06-30, 11:15 authored by Jiuxu Song, Jiahao Wang, Yuanzhong Qin, Shuai Ding, Bing JiBing Ji
By combining a coupled inductor with voltage multipliers, the voltage gain of a boost converter can be improved significantly. This method has good application prospects in renewable energy generation and in DC microgrids. A coupled inductor is the core component of the high step-up DC/DC converter and has serious impact on its performance. However, shortage in the methods used to design the coupled inductor have limited the applications of such converters. By analyzing the operating modes of the high step-up DC/DC converter with a three-winding coupled inductor combined with two voltage multipliers, accurate and simplified models of currents in the three windings are established. Furthermore, a design methodology for a multi-winding coupled inductor is put forward, in which a method of calculating the boost inductance and product areas (AP) and a method for selecting the magnetic core are established. The influence of winding arrangements and loss evaluations of the coupled inductor are also investigated. Finally, a 200 W prototype converter with an input of 20 V and output of 200 V is prepared and tested. The correctness of the current models of and design methods used on coupled inductor are verified. More important, the method proposed to design multi-winding coupled inductors can be applied to design high step-up DC/DC converters with different topologies.

Funding

Marie Skłodowska-Curie Actions (MSCA) under the European Union’s Horizon 2020 Research and Innovation Staff Exchange (RISE) under Grant 872001

Key Research and Development Program of Shaanxi Province under Grant No. 2022GY-135

History

Author affiliation

College of Science & Engineering Engineering

Version

  • VoR (Version of Record)

Published in

Energies

Volume

18

Issue

8

Pagination

1938

Publisher

MDPI AG

eissn

1996-1073

Copyright date

2025

Available date

2025-06-30

Language

en

Deposited by

Dr Bing Ji

Deposit date

2025-06-01

Data Access Statement

The data that support the findings of this study are available from the authors, Jiuxu Song and Bing Ji, upon reasonable request.

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