Sizing of Inductive Power Pads for Dynamic Charging of EVs on IPT Highways

被引:77
|
作者
Nagendra, Ganesh R. [1 ]
Covic, Grant A. [2 ]
Boys, John T. [3 ]
机构
[1] Engn Int, Perth, WA 6077, Australia
[2] Univ Auckland, Auckland 1010, New Zealand
[3] Univ Auckland, Dept Elect & Comp Engn, Auckland 1010, New Zealand
关键词
Couplers; electric vehicles (EVs); inductive power transmission; magnetic analysis; wireless power transfer; ELECTRIC VEHICLE; CHALLENGES; SUPPLIES; COUPLERS; SYSTEMS;
D O I
10.1109/TTE.2017.2666554
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
In this paper, the physical sizing of inductive power transfer (IPT) power pads on a dynamic IPT highway is explored. Previous work has focused only on sizing for stationary IPT chargers, and this paper extends this analysis for double-D (DD) and DD quadrature-based power pads. First, a window function (here fitted using a Gaussian distribution) is created to model the power transfer profiles when individual primary pads on the highway are energized. An analytical expression is developed that can predict the resultant power profiles from energizing multiple primary pads, depending on the phase angle between the individual primary pad currents and the physical sizes of the IPT pads. A practical design example is then presented that shows how pads could be sized to allow for 10-kW power transfer to sedans and SUVs (air gaps ranging from 250-400 mm) with only a 25% reduction in power as they drive along the highway.
引用
收藏
页码:405 / 417
页数:13
相关论文
共 50 条
  • [41] Economic Viability of Dynamic Wireless Charging Technology for Private EVs
    Li, Chuanyue
    Dong, Xue
    Cipcigan, Liana M.
    Haddad, Manu Abderrahmane
    Sun, Mingyu
    Liang, Jun
    Ming, Wenlong
    IEEE TRANSACTIONS ON TRANSPORTATION ELECTRIFICATION, 2023, 9 (01) : 1845 - 1856
  • [42] Dynamic Pricing for Charging of EVs with Monte Carlo Tree Search
    Mrkos, Jan
    Basmadjian, Robert
    SMART CITIES, 2022, 5 (01): : 223 - 240
  • [43] Modeling and Analysis of Dynamic Charging for EVs: A Stochastic Geometry Approach
    Nguyen D.M.
    Kishk M.A.
    Alouini M.-S.
    IEEE Open Journal of Vehicular Technology, 2021, 2 : 17 - 44
  • [44] The Optimal Placement of Ferrite in Inductive Power Transfer Coupling Pads
    Hu, Meilin
    Madawala, Udaya K.
    Baguley, Craig
    2021 IEEE 12TH ENERGY CONVERSION CONGRESS AND EXPOSITION - ASIA (ECCE ASIA), 2021, : 469 - 474
  • [45] Integration of solar based charging station in power distribution network and charging scheduling of EVs
    Shafiq, Aqib
    Iqbal, Sheeraz
    Rehman, Anis Ur
    Elbarbary, Z. M. S.
    Kotb, Hossam
    Selim, Ali
    Kamel, Salah
    FRONTIERS IN ENERGY RESEARCH, 2023, 11
  • [46] Analytical Sizing Methodology for Inductive Power Transfer Systems
    Porras Arteaga, Iker
    Martin Ibanez, Federico
    Martinez-Iturralde, Miguel
    Elosegui, Ibon
    2014 IEEE 15TH WORKSHOP ON CONTROL AND MODELING FOR POWER ELECTRONICS (COMPEL), 2014,
  • [47] A Model for Calculating the Magnetic & Copper Losses of an Inductive Power Transfer (IPT) Pad
    Malek, Hadi
    Wu, Hunter H.
    2013 TWENTY-EIGHTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC 2013), 2013, : 2734 - 2738
  • [48] An Optimal Control Strategy for LCL Tuned Inductive Power Transfer (IPT) Systems
    Dong, Weihao
    Madawala, Udaya
    Baguley, Craig
    2021 IEEE 12TH ENERGY CONVERSION CONGRESS AND EXPOSITION - ASIA (ECCE ASIA), 2021, : 159 - 164
  • [49] A methodology to reach high power factor during multiple EVs charging
    Lamedica, Regina
    Maccioni, Marco
    Ruvio, Alessandro
    Timar, Tudor Gabriel
    Carere, Federico
    Sammartino, Eleonora
    Ferrazza, Diego
    ELECTRIC POWER SYSTEMS RESEARCH, 2022, 210
  • [50] Curbside cab charging: Wireless power tech keeps EVs on the go
    Ulrich, Lawrence
    IEEE SPECTRUM, 2020, 57 (10) : 8 - 9