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Safety Management Technologies for Wireless Electric Vehicle Charging Systems: A Review

  • Songyan Niu*
  • , Qirui Jia
  • , Yang Hu
  • , Chengbo Yang
  • , Linni Jian*
  • *Corresponding author for this work
  • Hong Kong Polytechnic University

Research output: Contribution to journalReview articlepeer-review

Abstract

Wireless electric vehicle charging (WEVC) is rapidly advancing as an enabling technology for convenient electrified transportation. The trend toward high-power WEVC systems is accelerating, which not only enhances charging speed and user convenience but also introduces new and complex safety challenges. These challenges are particularly acute at the coupler level, where electrical, thermal, and magnetic risks often interact. This review offers a comprehensive analysis of safety management technologies that are specific to WEVC, with an exclusive focus on coupler-related risks. System-level and coupler-level hazards associated with high-power operation are first examined, followed by an in-depth discussion of recent progress in passive safety materials, such as insulation, thermal dissipation, and electromagnetic shielding. Active safety management strategies are also reviewed in detail, including foreign object detection, live body detection, misalignment detection, and multifunctional detection schemes that integrate these capabilities. Emphasis is placed on the ongoing rapid iteration of safety technologies as power levels increase and on the necessity for solutions that are comprehensive, precise, orderly, and reliable. This review concludes by highlighting future research directions, such as data-driven safety management, intelligent sensor integration, regulatory evolution, and user-centered system design, aiming to support the safe and scalable deployment of WEVC in next-generation mobility.

Original languageEnglish
Article number2380
JournalElectronics (Switzerland)
Volume14
Issue number12
DOIs
StatePublished - Jun 2025

Keywords

  • foreign object detection
  • high-power charging
  • inductive power transfer
  • insulating material
  • live body detection
  • magnetic coupler
  • misalignment
  • safety management
  • shielding
  • wireless power transfer

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