Variable Switching Frequency for ZVS over Wide Voltage Range in Dual Active Bridge

Author:

Cárcamo Alberto1ORCID,Fernandez-Hernandez Alejandro2ORCID,Gonzalez-Hernando Fernando2,Vázquez Aitor1ORCID,Rodríguez Alberto1ORCID

Affiliation:

1. Electrical, Electronic, Communications and Systems Engineering Department, Universidad de Oviedo, 33204 Gijón, Spain

2. Ikerlan Technology Research Centre, Basque Research and Technology Alliance (BRTA), P° J.M. Arizmendiarrieta, 2., 20500 Arrasate/Mondragón, Spain

Abstract

The Dual Active Bridge (DAB) converter is known for its advantageous characteristics, including bidirectionality, galvanic isolation, and soft-switching operation. However, achieving Zero Voltage Switching (ZVS) across the complete operation range is not guaranteed, particularly through a wide input–output voltage ratio. This paper explores the integration of the switching frequency as a control variable in the DAB converter to ensure ZVS operation across a wide voltage range, employing Single Phase Shift (SPS) modulation. The study evaluated the RMS and reactive currents under variable switching frequency, presenting the advantages of this approach. Moreover, it includes a design-oriented analysis of the ZVS limits and their relationship with the switching frequency, aiming to ensure ZVS at any operating point. Experimental results validated the theoretical analysis, while presenting the main advantages of variable switching frequency implementation.

Funder

Principality of Asturias

FICYT

AEI

Publisher

MDPI AG

Reference33 articles.

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2. Performance Characterization of a High-Power Dual Active Bridge dc-to-dc Converter;Kheraluwala;IEEE Trans. Ind. Appl.,1992

3. Schibli, N. (2000). Symmetrical Multilevel Converters with Two Quadrant DC-DC Feeding, École Polytechnique Fédérale de Lausanne.

4. Krismer, F. (2010). Modeling and Optimization of Bidirectional Dual Active Bridge DC—DC Converter Topologies, ETH Zurich.

5. Different purpose design strategies and techniques to improve the performance of a dual active bridge with phase-shift control;Lamar;IEEE Trans. Power Electron.,2015

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