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Designs of Dual-band Metamaterials for Near-field Wireless Power Transmission

    • Institute of Deep Perception Technology
    • University of Liverpool
    • Xi'an Jiaotong-Liverpool University
    • JITRI
    • Jiangsu Industrial Technology Research Institute (JITRI)
    • Jiangsu Industrial Technology Research Institute
    • The Hong Kong University of Science and Technology (Guangzhou)

    Research output: Chapter in Book or Report/Conference proceedingConference Proceedingpeer-review

    Abstract

    Within the ever-changing environment of Wireless Power Transmission (WPT), the goal of increased efficiency and charging range has gained significant interest. A significant difficulty is the inherent reduction in energy transmission with increasing distance and decreasing coupling coefficients. Metamaterials (MTMs), designed objects with remarkable electromagnetic characteristics, represent a possible option for overcoming these restrictions through magnetic field manipulation. Recent research has focused on multiband WPT systems, namely dual-band metamaterial (DB-MTM) that can optimize power transfer efficiency at two different frequencies at the same time. This study presents a complete overview of recent advances in DB-MTM for WPT applications. It investigates the structural complexities of these metamaterials before conducting a comparative examination of previously described DB-MTM-based WPT systems across a range of performance criteria.

    Original languageEnglish
    Title of host publicationProceedings - International SoC Design Conference 2024, ISOCC 2024
    PublisherInstitute of Electrical and Electronics Engineers Inc.
    Pages203-204
    Number of pages2
    ISBN (Electronic)9798350377088
    DOIs
    Publication statusPublished - 2024
    Event21st International System-on-Chip Design Conference, ISOCC 2024 - Sapporo, Japan
    Duration: 19 Aug 202422 Aug 2024

    Publication series

    NameProceedings - International SoC Design Conference 2024, ISOCC 2024

    Conference

    Conference21st International System-on-Chip Design Conference, ISOCC 2024
    Country/TerritoryJapan
    CitySapporo
    Period19/08/2422/08/24

    Keywords

    • Dual-band Metamaterial (DB-MTM)
    • Near-field Wireless Power Transfer (NF-WPT)
    • Power Transfer Efficiency (PTE)

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