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Q2 2025

Seamless metamaterial integration into slotted resonators for compact high-performance near-field wireless power transfer system design

Kassen Dautov · Anwar Jarndal · Eqab Almajali · Sohaib Majzoub · Soliman A. Mahmoud · Talal Bonny · Mohammad Hashmi
10.1007/s44444-025-00026-6 383 Views 0 Citations
0
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Abstract

Abstract
This paper presents a novel design concept for near-field wireless power transfer (WPT) systems that leverages the seamless integration of metamaterials (MTMs) into slotted resonators. This approach enhances magnetic field (

$$\textbf{B}$$

B


) distribution, strengthens evanescent wave coupling, and hence improves overall WPT performance. An MTM structure exhibiting negative permeability at the operating frequency of 433 MHz was designed and incorporated into a square-slot-based resonator. Electromagnetic (EM) analysis revealed increased current density and subsequently enlarged

$$\textbf{B}$$

B


around the resonator. Additionally, impedance matching, key parameter extraction, and equivalent circuit (EC) modeling were performed using the effective J-inverter method. The developed WPT system, with compact dimensions of 30

$$\times$$

×


30

$$^{\text {2}}$$




2



, achieved a power transfer efficiency of 82% at 33 mm. The design was experimentally validated, showing excellent agreement among EM simulations, EC modeling, and measurement results. Finally, performance comparison with other reported systems confirmed the superiority and practical effectiveness of the proposed design in enabling compact and highly efficient WPT systems.

Cite this Article (APA)
Kassen, D., Anwar, J., Eqab, A., Sohaib, M., Soliman, A. M., Talal, B., Mohammad, H. (2025). Seamless metamaterial integration into slotted resonators for compact high-performance near-field wireless power transfer system design. Journal of King Saud University - Engineering Sciences. https://doi.org/10.1007/s44444-025-00026-6
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Published in
ISSN 1018-3639
Quartile Q2
AMS Score 91
Field Engineering & Technology
Publisher Elsevier / King Saud University
Country 🇸🇦 Saudi Arabia
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Authors
Publication Details
Year 2025
Language English
Added 23 Jul 2026