An Analytical Method to Calculate Winding Resistance for Planar Coil with Ferrite Plate and Litz Wire in Inductive Power Transfer

被引:0
|
作者
Lu, Ming [1 ]
Ngo, Khai D. T. [1 ]
机构
[1] Virginia Tech, Bradley Dept Elect & Comp Engn, Ctr Power Elect Syst, Blacksburg, VA 24061 USA
关键词
inductive power transfer (IPT); winding resistance; planar coil; ferrite; litz wire; method of image; OPTIMIZATION;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Planar coils with litz wires are used a lot in inductive power transfer for electric vehicles. When the litz wire is properly selected for the coil, the winding resistance is composed of DC resistance and proximity-effect resistance. The calculation of DC resistance is simple, using the cross-sectional area and the length of the wire, but the calculation of proximity-effect resistance is complicated, in which the magnetic fields across the turns of the winding are essential. When the ferrite plate is added to the planar coil in inductive power transfer to improve the quality factor and the coupling coefficient, the analytical derivation of the magnetic fields is even more complicated. In this paper, the method of image is applied to obtain the magnetic fields across the winding turns of the planar coil with ferrite plate. The ferrite plate is replaced by mirror turns, and the magnetic fields are calculated with Ampere's Law and Biot-Savart Law. In order to verify the accuracy of this method, an exemplary planar coil with litz wire and ferrite plate was fabricated and its resistance was measured. The difference between the calculated resistance and measured resistance is less than 10%.
引用
收藏
页码:111 / 117
页数:7
相关论文
共 38 条
  • [11] Semi-Analytical AC Resistance Prediction Model for Litz Wire Winding in High-Frequency Transformer
    Peng, Chenyi
    Chen, Guodong
    Wang, Borong
    Song, Jinfeng
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2023, 38 (10) : 12730 - 12742
  • [12] Comparison of Coil Topologies for Inductive Power Transfer under the Influence of Ferrite and Aluminum
    Knaisch, Katharina
    Springmann, Markus
    Gratzfeld, Peter
    2016 ELEVENTH INTERNATIONAL CONFERENCE ON ECOLOGICAL VEHICLES AND RENEWABLE ENERGIES (EVER), 2016,
  • [13] Accurate Evaluation Method of Litz Coil AC Resistance in Wireless Power Transfer Magnetically-Coupled System
    Chen Q.
    Fan F.
    Wang J.
    Chen W.
    Deng X.
    Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2022, 37 (24): : 6294 - 6305
  • [14] Analysis of Litz Wire AC Resistance Based on Semi-Analytical Finite Element Method
    Jin F.-Y.
    Ma Y.-F.
    Tien Tzu Hsueh Pao/Acta Electronica Sinica, 2023, 51 (12): : 3457 - 3462
  • [15] Light Weight and Efficient Litz-wire Based Ferrite-less Shielding for Wireless Power Transfer
    Dayerizadeh, Alireza
    Taylor, Sofia
    Feng, Hao
    Lukic, Srdjan
    2020 THIRTY-FIFTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC 2020), 2020, : 3190 - 3194
  • [16] Analysis of Co-Planar Intermediate Coil Structures in Inductive Power Transfer Systems
    Kamineni, Abhilash
    Covic, Grant A.
    Boys, John T.
    2014 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2014, : 1783 - 1790
  • [17] A Coil Structure Optimal Method Based on Vertical Coupling for Inductive Power Transfer
    Zhu, Fan
    Tang, Yunyu
    Ma, Hao
    2016 IEEE 2ND ANNUAL SOUTHERN POWER ELECTRONICS CONFERENCE (SPEC), 2016,
  • [18] A Novel Coil Design Method for Inductive Power Transfer Avoiding Compensation Circuits
    Yi, Zixuan
    Zhu, Qi
    2018 ASIA-PACIFIC MICROWAVE CONFERENCE PROCEEDINGS (APMC), 2018, : 1438 - 1440
  • [19] A Coil Positioning Method Integrated With an Orthogonal Decoupled Transformer for Inductive Power Transfer Systems
    Zhang, Zhuhaobo
    Zheng, Shaoting
    Yao, Zirui
    Xu, Dehong
    Krein, Philip T.
    Ma, Hao
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2022, 37 (08) : 9983 - 9998
  • [20] SIMP-Method Topology Optimization of Ferrite Structures in Inductive Power Transfer Systems
    Pei, Yao
    Pichon, Lionel
    Bihan, Yann Le
    Bensetti, Mohamed
    IEEE TRANSACTIONS ON ELECTROMAGNETIC COMPATIBILITY, 2023, 65 (06) : 1744 - 1750