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March 4, 2026AIP Advances0 citationsOpen Access

An asymmetric coupler with magnetic flux-enhanced I-shaped core for improving misalignment tolerance in IPT systems

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YXYue XuRZRuiheng ZhangWHWentao Huang

Key Points

  • The research aims to enhance misalignment tolerance in inductive power transfer (IPT) systems using an innovative coupler design.
  • Introduced an asymmetric coupler with an I-shaped magnetic core structure.
  • Analyzed the design optimization process for reducing the demagnetization factor.
  • Conducted comparative experiments with traditional cubic-core asymmetric couplers.
  • Demonstrated superior magnetic coupling and misalignment resistance with the I-shaped core.
  • Achieved a 23% reduction in output voltage fluctuation.
  • Increased efficiency by 5% compared to cubic-core couplers.

Abstract

Misalignment tolerance is critical for inductive power transfer (IPT) systems. This paper introduces an innovative asymmetric coupler based on an I-shaped magnetic core structure, significantly improving output voltage stability under horizontal and vertical displacements. Unlike conventional cubic magnetic cores, the I-shaped core enhances flux concentration by enlarging its ends while narrowing the middle section, effectively reducing the demagnetization factor and boosting magnetic focusing capability. The design optimization process for minimizing the demagnetization factor is thoroughly analyzed. Comparative experiments with traditional cubic-core asymmetric couplers demonstrate the proposed structure’s superior magnetic coupling and misalignment resistance. Experimental results show that the I-shaped core IPT system achieves a 23% lower output voltage fluctuation and 5% higher efficiency compared to its cube core counterpart.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69a7cd0bd48f933b5eed9034https://doi.org/10.1063/5.0316049
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