Study and Design High-Frequency Resonant Inductive Power Transfer for Application of Wireless Charging Electric Vehicles

被引:0
|
作者
Purwadi, Agus [1 ]
Rizqiawan, Arwindra [1 ]
Pohan, Ayudhia Puspita [1 ]
Abdillah, Danang Choirul [1 ]
Wijaya, Made Dimas Ganda [1 ]
机构
[1] Bandung Inst Technol, Sch Elect Engn & Informat, Bandung, Indonesia
关键词
Inductive Power Transfer; high-frequency ACAC and AC-DC converter; a current controller; resonance frequency; JMAG;
D O I
暂无
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
This paper explains about the design of wireless power transfer using resonance circuit or called Inductive Power Transfer (IPT). IPT has divided into three parts AC-AC converters, a magnetic coupling circuit, and AC-DC converter. AC-AC converter parts will change the system frequency to high frequency. Besides that, this converter has a current controller to make sure the current that goes to primary side not too high. The average efficiency of AC-AC converter is 85%. Also, at magnetic coupling, a study was conducted to examine the relation between misalignment coils and power transfer efficiency, between misalignment coils and coupling coefficient, as well as the relation between air gap and coupling coefficient. A 3D modeling is done using Finite Element Method (FEM) with JMAG. At the 50-kHz resonant frequency, the results show that the power transfer efficiency decreased significantly when the misalignment between the two coils reached 160 mm or more, between misalignment with efficiency has a negative correlation, the relation between the misalignment with coupling coefficient has negative correlation, and the relation between the air gap with coupling coefficient also has negative correlation. And the last part is the AC-DC converter circuit with charging regulator used. The AC-DC converter consists of a series of rectifiers, buck converters, and controls used in battery charging. The simulations were performed to study the battery charging scheme as well as the value of the parameters designed using PSIM and Matlab Simulink software to the voltage change and the state of charge (SOC) of the battery.
引用
收藏
页码:179 / 187
页数:9
相关论文
共 50 条
  • [21] Inductive Power Transfer with Wireless Communication System for Electric Vehicles
    Asheer, Sara
    Al-Marawani, Amna
    Khattab, T.
    Massoud, A.
    [J]. 2013 7TH IEEE GCC CONFERENCE AND EXHIBITION (GCC), 2013, : 517 - 522
  • [22] Thermal Evaluation of an Inductive Power Transfer Pad for Charging Electric Vehicles
    Kim, Seho
    Amirpour, Maedeh
    Dharmakeerthi, Tharindu
    Barsari, Vahid Zahiri
    Covic, Grant
    Bickerton, Simon
    Thrimawithana, Duleepa
    [J]. IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, 2022, 69 (01) : 314 - 322
  • [23] Development of a Mixed Inductive and Capacitive Wireless Power Transfer to Improve Misalignment Performance for Charging Electric Vehicles
    Behnamfar, Milad
    Jafari, Hassan
    Sarwat, Arif
    [J]. 2022 IEEE/AIAA TRANSPORTATION ELECTRIFICATION CONFERENCE AND ELECTRIC AIRCRAFT TECHNOLOGIES SYMPOSIUM (ITEC+EATS 2022), 2022, : 600 - 605
  • [24] Design of coil parameters for inductive type wireless power transfer system in electric vehicles
    Sakthi, Balasubramaniam Brindha
    Sundari, Parvathysankar Deiva
    [J]. INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2022, 46 (10) : 13316 - 13335
  • [25] Optimal Study of Resonant Wireless Charging Coils for Electric Vehicles
    Dong, Yifan
    Lu, Wenzhou
    Liu, Yanwei
    Chen, Haiying
    [J]. 2018 21ST INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS (ICEMS), 2018, : 871 - 875
  • [26] Potential of wireless power transfer for dynamic charging of electric vehicles
    Hutchinson, Luke
    Waterson, Ben
    Anvari, Bani
    Naberezhnykh, Denis
    [J]. IET INTELLIGENT TRANSPORT SYSTEMS, 2019, 13 (01) : 3 - 12
  • [27] Maximizing Power Transfer for Dynamic Wireless Charging Electric Vehicles
    Cirimele, Vincenzo
    Smiai, Oussama
    Guglielmi, Paolo
    Bellotti, Francesco
    Berta, Riccardo
    De Gloria, Alessandro
    [J]. APPLICATIONS IN ELECTRONICS PERVADING INDUSTRY, ENVIRONMENT AND SOCIETY, APPLEPIES 2016, 2018, 429 : 59 - 65
  • [28] Experimental study of wireless inductive system for electric vehicles batteries charging
    Gigov, George
    Krusteva, Anastasia
    Valtchev, Stanimir
    [J]. 2016 IEEE INTERNATIONAL POWER ELECTRONICS AND MOTION CONTROL CONFERENCE (PEMC), 2016, : 286 - 290
  • [29] INDUCTIVE HIGH POWER TRANSFER TECHNOLOGIES FOR ELECTRIC VEHICLES
    Madzharov, Nikolay D.
    Tonchev, Anton T.
    [J]. JOURNAL OF ELECTRICAL ENGINEERING-ELEKTROTECHNICKY CASOPIS, 2014, 65 (02): : 125 - 128
  • [30] Design, implementation and experimental results of an inductive power transfer system for electric bicycle wireless charging
    Pellitteri, Filippo
    Campagna, Nicola
    Castiglia, Vincenzo
    Damiano, Alfonso
    Miceli, Rosario
    [J]. IET RENEWABLE POWER GENERATION, 2020, 14 (15) : 2908 - 2915