Receiving-coil structure reducing stray AC resistance for resonant coupling wireless power transfer

被引:3
|
作者
Umetani, Kazuhiro [1 ]
Honjo, Toru [1 ]
Koyama, Takahiro [1 ]
Ishihara, Masataka [1 ]
Hiraki, Eiji [1 ]
机构
[1] Okayama Univ, Grad Sch Nat Sci & Technol, Kita Ku, 3-1-1 Tsushima Naka, Okayama, Japan
关键词
coils; inductive power transmission; single winding layer; stray AC resistance; mutual inductance; mobile apparatus; power supply method; receiving-coil structure; resonant inductive coupling wireless power transfer; stray alternating current resistance; TRANSFER SYSTEM; EFFICIENCY; DESIGN; IMPROVEMENT; DEVICES; LAYER;
D O I
10.1049/iet-pel.2018.5358
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Resonant inductive coupling wireless power transfer is widely known to be a possible convenient power supply method for the small mobile apparatus. However, the limited receiving-coil size tends to lower the efficiency and limit the output power owing to the small mutual inductance and comparatively large stray alternating current (AC) resistance of the receiving-coil. This study mitigates this issue by proposing a novel receiving-coil structure. This proposed structure comprises a coil and a drum core with a thin axis. The coil is wound on the axis to form a single winding layer. The proposed structure can reduce stray AC resistance by suppressing the proximity effect and reducing the wire length without deteriorating the mutual inductance significantly. Therefore, better efficiency and larger output power can be achieved. Simulations and experiments were performed to verify the proposed structure. Consequently, both simulations and experiments supported the reduction in AC resistance compared to the conventional structure. Furthermore, the experiment revealed improvements by the proposed structure in both efficiency and output power. These results support the effectiveness of the proposed structure for wireless power transfer to small mobile apparatus.
引用
收藏
页码:2338 / 2344
页数:7
相关论文
共 50 条
  • [41] A Self-Compensated Planar Coil for Resonant Wireless Power Transfer Systems
    Wang, Qingsong
    Saket, Mohammad Ali
    Troy, Aaron
    Ordonez, Martin
    [J]. IEEE TRANSACTIONS ON POWER ELECTRONICS, 2021, 36 (01) : 674 - 682
  • [42] Coil Design and Shielding Methods for a Magnetic Resonant Wireless Power Transfer System
    Kim, Jiseong
    Kim, Jonghoon
    Kong, Sunkyu
    Kim, Hongseok
    Suh, In-Soo
    Suh, Nam Pyo
    Cho, Dong-Ho
    Kim, Joungho
    Ahn, Seungyoung
    [J]. PROCEEDINGS OF THE IEEE, 2013, 101 (06) : 1332 - 1342
  • [43] Analysis of EMF Noise from the Receiving Coil Topologies for Wireless Power Transfer
    Kim, Jonghoon
    Kim, Hongseok
    Kim, Mijoo
    Ahn, Seungyoung
    Kim, Jiseong
    Kim, Joungho
    [J]. 2012 ASIA-PACIFIC INTERNATIONAL SYMPOSIUM ON ELECTROMAGNETIC COMPATIBILITY (APEMC), 2012, : 645 - 648
  • [44] Design of a novel coil structure for dynamic wireless power transfer
    Li, Zheng
    Sun, Zhongchun
    Tang, Minglei
    Xie, Qilong
    Sun, Hexu
    [J]. Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology, 2024, 56 (09): : 85 - 94
  • [45] Study on electromagnetic characteristics of the magnetic coupling resonant coil for the wireless power transmission system
    Wang, Zhongxian
    Liu, Yiping
    Wei, Yonggeng
    Song, Yilin
    [J]. JOURNAL OF APPLIED BIOMATERIALS & FUNCTIONAL MATERIALS, 2018, 16 : 140 - 149
  • [46] Interference of ferromagnetic objects on resonant coupling wireless power transfer links
    Li, Kang
    Zhang, Guoqiang
    Guo, Runrui
    Javed, Hassan
    [J]. Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2014, 29 : 1 - 7
  • [47] On the Design of Magnetic Resonant Coupling for Wireless Power Transfer in Multicoil Networks
    Demarchou, Eleni
    Psomas, Constantinos
    Krikidis, Ioannis
    [J]. IEEE WIRELESS COMMUNICATIONS LETTERS, 2022, 11 (02) : 406 - 410
  • [48] Frequency Splitting Phenomena of Magnetic Resonant Coupling Wireless Power Transfer
    Huang, Runhong
    Zhang, Bo
    Qiu, Dongyuan
    Zhang, Yuqiu
    [J]. IEEE TRANSACTIONS ON MAGNETICS, 2014, 50 (11)
  • [49] Magnetic Resonant Coupling Wireless Power Transfer for Lightweight Batteryless UAVs
    Torrisi, Alessandro
    Brunelli, Davide
    [J]. 2020 INTERNATIONAL SYMPOSIUM ON POWER ELECTRONICS, ELECTRICAL DRIVES, AUTOMATION AND MOTION (SPEEDAM 2020), 2020, : 751 - 756
  • [50] A Comparison of Analytical Models for Resonant Inductive Coupling Wireless Power Transfer
    Bou, E.
    Alarcon, E.
    Gutierrez, J.
    [J]. PIERS 2012 MOSCOW: PROGRESS IN ELECTROMAGNETICS RESEARCH SYMPOSIUM, 2012, : 689 - 693