Electromagnetic Coupling Optimization by Coil Design Improvements for Contactless Power Transfer of Electric Vehicles

被引:0
|
作者
Duan, Junlong [1 ]
Wang, Weiji [1 ]
机构
[1] Univ Sussex, Dept Engn & Design, Brighton BN1 9QT, E Sussex, England
关键词
Contactless power transfer (CPT); Wireless power transmitting (WPT); Inductive coupling; Finite element method (FEM); Maxwell equations; Ferrite cores; Electric vehicles (EV) charging efficiency;
D O I
10.1007/978-3-030-02683-7_69
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
The fossil fuel scarcity worldwide has rapidly driven the electric vehicles and battery charging technologies, including contactless power transfer (CPT), over the past decades. There still exist many technical difficulties to be specifically addressed and ideas to be innovatively achieved although a lot of contribution on EVs charging solutions has been made by the engineering world. In this paper, the comparatively up to date CPT technologies for EVs charging were investigated and the project methodology was discussed from the aspects of maximizing the charging system efficiency, power transfer rating levels and air gaps of charging coupling coils. Until present, the different coil designs, ferrite core deployments, operating frequencies and air gaps are acting as the main investigation factors regarding producing transfer efficiencies and power ratings on the load end. By modeling and simulating the electromagnetic field couplings with the simplified inductive transmitting system in 3D finite-element methods based environment, an Axis-to-Axis (Coaxial) rectangular coil CPT system and an Axis-Parallel (Non-coaxial) rectangular coil system have been modeled and quantitatively compared. Besides, an axis-parallel coil system and a C-Type rectangular coil system deploying ferrite cores with 50 mm air gap have been analyzed, resulting in output efficiencies over 85% and 74%, respectively. In addition, the effectiveness of using a ferrite core to improve the flux linkage and magnetic flux density can be noticed. From the perspective of electromagnetic field, the contributions of deploying natural resonant frequencies of transmitting ground side and receiving vehicle side in terms of system efficiency, magnetic field strength generated and actual power transfer ratings have been described.
引用
收藏
页码:944 / 958
页数:15
相关论文
共 50 条
  • [1] An Optimal Design of Contactless Power Transfer System Applied for Electric Vehicles Using Electromagnetic Resonant Coupling
    Duan, Junlong
    Wang, Weiji
    PROCEEDINGS OF THE FUTURE TECHNOLOGIES CONFERENCE (FTC) 2019, VOL 1, 2020, 1069 : 919 - 933
  • [2] Optimization of a Contactless Power Transfer System for Electric Vehicles
    Hasanzadeh, Saeed
    Vaez-Zadeh, Sadegh
    Isfahani, Arash Hassanpour
    IEEE TRANSACTIONS ON VEHICULAR TECHNOLOGY, 2012, 61 (08) : 3566 - 3573
  • [3] Characteristics of Contactless Power Transfer for HTS Coil Based on Electromagnetic Resonance Coupling
    Kim, Dae Wook
    Chung, Yoon Do
    Kang, Hyoung Ku
    Yoon, Yong Soo
    Ko, Tae Kuk
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2012, 22 (03)
  • [4] Study on the principle of contactless electric power transfer via electromagnetic coupling
    Hagiwara, Nobumi
    ELECTRICAL ENGINEERING IN JAPAN, 2013, 182 (02) : 53 - 60
  • [5] Study on the principle of contactless electric power transfer via electromagnetic coupling
    Hagiwara N.
    IEEJ Transactions on Industry Applications, 2011, 131 (05) : 708 - 713
  • [6] Performance Evaluation of Coil Design in Inductive Power Transfer for Electric Vehicles
    Ghazizadeh, Saeid
    Mekhilef, Saad
    Seyedmahmoudian, Mehdi
    Chandran, Jaideep
    Stojcevski, Alex
    IEEE ACCESS, 2024, 12 : 108201 - 108223
  • [7] Design Optimization of Various Contactless Power Transformer Topologies for Wireless Charging of Electric Vehicles
    Movagharnejad, Hedieh
    Mertens, Axel
    2016 18TH EUROPEAN CONFERENCE ON POWER ELECTRONICS AND APPLICATIONS (EPE'16 ECCE EUROPE), 2016,
  • [8] Design of coil parameters for inductive type wireless power transfer system in electric vehicles
    Sakthi, Balasubramaniam Brindha
    Sundari, Parvathysankar Deiva
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2022, 46 (10) : 13316 - 13335
  • [9] A Design of Inductively Coupled Wireless Power Transfer System With Coupling Coil Optimization
    Noda, Takumi
    Nagashima, Tomoharu
    Sekiya, Hiroo
    2015 IEEE INTERNATIONAL TELECOMMUNICATIONS ENERGY CONFERENCE (INTELEC), 2015,
  • [10] Flexible Automation for the Production of Contactless Power Transfer Systems for Electric Vehicles
    Risch, Florian
    Guenther, Stefan
    Bickel, Benjamin
    Franke, Joerg
    2013 3RD INTERNATIONAL ELECTRIC DRIVES PRODUCTION CONFERENCE (EDPC), 2013, : 485 - 491