Optimizing the Energy Transfer, With a High System Efficiency in Dynamic Inductive Charging of EVs

被引:28
|
作者
Karakitsios, Ioannis [1 ]
Palaiogiannis, Foivos [1 ]
Markou, Achilleas [1 ]
Hatziargyriou, Nikos D. [1 ]
机构
[1] Natl Tech Univ Athens, Elect Power, Athens 15780, Greece
关键词
Dynamic inductive charging; electric vehicles; optimization procedure; maximum transferred energy; high IPT system efficiency; WIRELESS POWER TRANSFER; ELECTRIC VEHICLES; DESIGN; IMPLEMENTATION; RESONANCE; TRACKING; LOAD; PAD;
D O I
10.1109/TVT.2018.2816998
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
Inductive charging is based on the operating principles of a transformer; energy is transferred through an air-gap from a primary coil incorporated in the charging station to a secondary coil incorporated in the electric vehicle (EV). Dynamic inductive charging allows the vehicle to wirelessly receive energy while moving on the road and appears to be an ideal solution for the increase of the limited travel range of EVs. However, currently developed dynamic inductive power transfer (IPT) solutions limit the application of this method when the EV rapidly moves over the charging station. The aim of this paper is to propose a novel optimization procedure, in order to define the values for the variables involved in the electrical operation of a dynamic IPT system. The optimization procedure considers constraints associated with the operational conditions in the primary and secondary sides of the IPT system, in order to define the movement section, where the energy transferred to the EV is maximized at a considerably high system efficiency. The values derived from the optimization method are implemented in the control of the secondary side of the IPT system. Moreover, a control method is proposed that effectively eliminates the need for a detection mechanism and the continuous data transfer between the primary and secondary side. The suggested control scheme requires the operation of the charging station at a low-efficiency movement section without significant energy losses in this specific section. The proposed optimization procedure is applied in the case of a 60-cm-diameter circular pad, and the suggested control scheme is validated by simulating the operation of the dynamic IPT system over the whole EV movement range. An experimental setup has been used to study the application of the optimization
引用
收藏
页码:4728 / 4742
页数:15
相关论文
共 50 条
  • [41] Analysis of the Effect of Design Parameters on the Power Transfer Efficiency of Resonant Inductive Coupling based Wireless EV Charging System
    Samal, Satish K.
    Kar, Durga P.
    Sahoo, Pradymna K.
    Bhuyan, Satyanarayan
    Das, S. N.
    2017 INNOVATIONS IN POWER AND ADVANCED COMPUTING TECHNOLOGIES (I-PACT), 2017,
  • [42] Impact analysis of Integrated Renewable Energy Sources and EVs charging demand on the Distribution System
    Mudgal, Yashvi
    Tiwari, Rajive
    2023 IEEE IAS GLOBAL CONFERENCE ON RENEWABLE ENERGY AND HYDROGEN TECHNOLOGIES, GLOBCONHT, 2023,
  • [43] Proposal of the Passive Type Dynamic Wireless Power Transfer System for EVs
    Yasuda, Tornio
    2017 19TH EUROPEAN CONFERENCE ON POWER ELECTRONICS AND APPLICATIONS (EPE'17 ECCE EUROPE), 2017,
  • [44] Sensorless Control of the Charging Process of a Dynamic Inductive Power Transfer System With an Interleaved Nine-Phase Boost Converter
    Ruffo, Riccardo
    Cirimele, Vincenzo
    Diana, Michela
    Khalilian, Mojtaba
    La Ganga, Alessandro
    Guglielmi, Paolo
    IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2018, 65 (10) : 7630 - 7639
  • [45] A critical review on inductive wireless power transfer charging system in electric vehicle
    Palani, Geetha
    Sengamalai, Usha
    ENERGY STORAGE, 2023, 5 (05)
  • [46] An Inductive Power Transfer System Design with Large Misalignment Tolerance for EV Charging
    Zhang, Zhuhaobo
    Krein, Philip T.
    Ma, Hao
    Tang, Yunvu
    Zhou, Jing
    Xu, Dehong
    2018 IEEE 27TH INTERNATIONAL SYMPOSIUM ON INDUSTRIAL ELECTRONICS (ISIE), 2018, : 1011 - 1016
  • [47] Design of High-Power High-Efficiency Wireless Charging Coils for EVs with MnZn Ferrite Bricks
    Zhu, Yuyu
    Wang, Zuming
    Cao, Xin
    Wu, Li
    JOURNAL OF SENSORS, 2021, 2021
  • [48] Inductive Link Design with Optimal Transfer Efficiency and a High CMRR
    Lin, Yi-Chieh
    Horng, Tzyy-Sheng
    Hwang, Lih-Tyng
    14TH INTERNATIONAL CONFERENCE ON ELECTRONIC MATERIALS AND PACKAGING (EMAP 2012), 2012,
  • [49] Design and Evaluation of Contactless Inductive Energy Transfer System
    Luo, Hengyang
    Wen, Huiqing
    2015 9TH INTERNATIONAL CONFERENCE ON POWER ELECTRONICS AND ECCE ASIA (ICPE-ECCE ASIA), 2015, : 1929 - 1936
  • [50] A 15 KW level 3 inductive power transfer charger for fast charging and maximum efficiency
    Seghyar, Otman
    El Khadiri, Karim
    El Affar, Anass
    Qjidaa, Hassan
    Ouazzani, Jamil Mohammed
    Tahiri, Ahmed
    RESULTS IN ENGINEERING, 2024, 24