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DOE OSTI · 3368795

Optimal Litz Wire Design for High-Power Wireless Charging System

Abstract

In this study, an optimized Litz wire and polyphase coil winding design is proposed for high-power wireless charging systems operating at 85 kHz frequency. Litz wire in a wireless charging system contributes to more than half of the losses of the system, making it a critical design component. Here, the Litz wire is optimized through Finite Element Analysis (FEA) considering electrical and mechanical design aspects and the design was validated through experimental tests on different Litz wires with various strand-diameters, twisting ratio, and number of strands. The proposed optimal Litz wire maximizes the system efficiency considering the tradeoff between coil resistance and mutual inductance. The optimal Litz wire shows that Litz wire constructed with the 63µm strands significantly outperform the traditionally used Litz wire with 100µm strand diameter. Additionally, the coil with optimal Litz wire design shows 60% reduction in the copper volume for the same loss, and at the same time increase the coil-to-coil efficiency by more than 2% by increasing the mutual inductance and reducing coil current. The optimized Litz wire was implemented in a 22-kW wireless charging system achieving 94.7% efficiency.

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BibTeXRIS

Aydin, Emrullah [ORNL], Mohammad, Mostak [ORNL] (ORCID:0000000256388783), Onar, Omer [ORNL] (ORCID:0000000292028857), Wilkins, Jon [ORNL] (ORCID:0000000329153839), Hoess, Bernhard [BMW Group]. 2026-03-01. Optimal Litz Wire Design for High-Power Wireless Charging System. https://doi.org/10.1109/apec51134.2026.11517021

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