Back to results
Bibliographic record · Consultation and access
Artículo

Design and implementation of interoperable high-efficiency bidirectional wireless power transfer systems for multiple vehicles

Baokun Zhang et al · Elsevier · 2026

Open access available
Quick overview. Review the resource’s basic details, then access the content using the main button. This page shows only the information needed to identify, cite, and open the work.

Resource access

Open the content from the main option or choose another available source.

DOAJ DOAJ Articles
Entrar por DOAJ
Main access

Open access available

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Open resource

Summary

Descripción general del contenido del recurso.

The rapid growth of electric vehicle ownership and advancements in vehicle-to-grid (V2G) technologies have created an urgent demand for bidirectional charging–discharging interfaces. Wireless power transfer (WPT) technology, known for its convenience, safety, and flexibility, is a promising solution for energy transfer between vehicles and the grid. This paper presents the design and demonstration of a highly interoperable and high-efficiency bidirectional WPT system, addressing key challenges such as wide voltage output adaptation, multi-power level compatibility, and efficient operation over a broad power range. The front-end converter uses a power module combining a three-phase fully controlled rectifier and a cascaded buck converter to provide a wide DC voltage range. Modular activation technology ensures the grid interface operates efficiently under varying power demands. For the bidirectional inductive power transfer (BIPT) link, an integrated scheme for the resonant networks in the ground assembly (GA) with cross-frequency compatibility is proposed, and its performance is validated through calculations and simulations. A bidirectional power flow control strategy is implemented, with voltage regulation and operation mode switching as the main method. Experimental results demonstrate interoperability between the same grid-side equipment and different vehicle-side equipment rated at 6, 11, and 30 ​kW. Under specified operating conditions at the aligned position, the system achieves a grid-to-battery efficiency from 91.7% to 94.3%, and a battery-to-grid efficiency ranging from 89.5% to 93.5%.

How to cite

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, B. Z. E. (2026). Design and implementation of interoperable high-efficiency bidirectional wireless power transfer systems for multiple vehicles. https://doi.org/10.1016/j.geits.2025.100307

MLA

al, Baokun Zhang et. "Design and implementation of interoperable high-efficiency bidirectional wireless power transfer systems for multiple vehicles." 2026. https://doi.org/10.1016/j.geits.2025.100307.

Chicago

al, Baokun Zhang et. 2026. "Design and implementation of interoperable high-efficiency bidirectional wireless power transfer systems for multiple vehicles.". https://doi.org/10.1016/j.geits.2025.100307.

Harvard

al, B. Z. E. 2026, Design and implementation of interoperable high-efficiency bidirectional wireless power transfer systems for multiple vehicles, Elsevier, available at: https://doi.org/10.1016/j.geits.2025.100307 [Accessed 6 Aug. 2026].

Share and print

Save the record, copy its permanent link, or print it as a PDF.

Export reference

You can export the record in common formats for use in a reference manager.

Resource details

Bibliographic information to help confirm that this is the correct material.

Title
Design and implementation of interoperable high-efficiency bidirectional wireless power transfer systems for multiple vehicles
Author / contributors
Baokun Zhang et al
Publisher
Elsevier
Publication year
2026
ISSN
2773-1537
ISSN
2773-1537
Language
English

Subjects

Explore related resources through these subjects.

Copied