Basic Experimental Study on a 1 kW-Class WPT System Using HTS and Copper Coils for EVs

被引:3
|
作者
Inoue, Ryota [1 ]
Iwamoto, Takahiro [1 ]
Komoda, Haruki [1 ]
Ueda, Hiroshi [1 ]
Kim, Seokbeom [1 ]
机构
[1] Okayama Univ, Grad Sch Environm Life Nat Sci & Technol, Okayama 7008530, Japan
关键词
Coils; High-temperature superconductors; Copper; Resistance; Prototypes; Wires; Capacitors; AC loss; copper coil; electric vehicles; HTS coil; wireless power transmission;
D O I
10.1109/TASC.2024.3354669
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
We have been investigated a large-capacity wireless power transmission (WPT) system for electric vehicles (EVs) in which a high-temperature superconducting (HTS) coil is installed only on the ground side. However, the WPT systems using HTS and copper coils (HTS-Cu system) have generally been discussed for low-capacity and high-frequency operation, specifically below 1 kW and above 10 kHz, respectively. Therefore, the design guidelines based on experimental results for the large-capacity and low-frequency HTS-Cu system have not been sufficiently discussed. In this paper, we fabricated a 1 kW-class HTS-Cu system at the operating frequency of 4.8 kHz, and investigated the differences in power transmission characteristics between the HTS-Cu system and a conventional WPT system using only copper coils (Cu-Cu system). As a results, we found that the system efficiency of the HTS-Cu system could obtain more than 98% at the receiving power of 1 kW, although it decreased slightly with increasing the receiving power. Moreover, the loss of the copper coil of the HTS-Cu system was lower than that of the Cu-Cu system. Furthermore, in the HTS-Cu system, the primary capacitor loss exceeded the secondary capacitor loss, and the losses of the primary and secondary wire resistances were almost as significant as the ac loss of the HTS coil. From the above, it is necessary to focus on suppression of the losses primary capacitor and the wiring resistances for the design of the several 100 kW-class WPT system using the HTS and copper coils for EVs.
引用
收藏
页码:1 / 5
页数:5
相关论文
共 50 条
  • [1] WPT System in Seawater for AUVs with kW-class Power, High Positional Freedom, and High Efficiency inside the Transfer Coils
    Hasaba, Ryosuke
    Yamaguchi, Shuichiro
    Yagi, Tatsuo
    Eguchi, Kazuhiro
    Satoh, Hiroshi
    Koyanagi, Yoshio
    2022 WIRELESS POWER WEEK (WPW), 2022, : 90 - 94
  • [2] Liquid Hydrogen Cooling System for 100 kW-Class HTS Rotor Thermal Design
    Kim, Kihwan
    Hahn, Seongyong
    Min, Byungho
    Sim, Ki-Deok
    Kim, Yubin
    Kim, Seokho
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2024, 34 (05) : 1 - 5
  • [3] Electric Power Transmission Characteristics of WPT System Using HTS and Copper Coils Coupled With Magnetic Material
    Inoue, Ryota
    Iwamoto, Takahiro
    Ueda, Hiroshi
    Kim, Seokbeom
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2025, 35 (05)
  • [4] Experimental Study of kW-class Wireless Charging System for Autonomous Underwater Vehicle with Magnetic Resonance
    Hasaba, Ryosuke
    Yamaguchi, Shuichiro
    Yagi, Tatsuo
    Eguchi, Kazuhiro
    Satoh, Hiroshi
    Koyanagi, Yoshio
    Ura, Tamaki
    2023 IEEE UNDERWATER TECHNOLOGY, UT, 2023,
  • [5] Experimental test of 4 kW-class Stirling cryocooler for superconducting cable cooling system
    Park, Jiho
    Ko, Junseok
    Kim, Hyobong
    Hong, Yongju
    Yeom, Hankil
    In, Sehwan
    Park, Seongje
    27TH INTERNATIONAL CRYOGENICS ENGINEERING CONFERENCE AND INTERNATIONAL CRYOGENIC MATERIALS CONFERENCE 2018 (ICEC-ICMC 2018), 2019, 502
  • [6] Cryocooler cooled HTS current lead for a 35 kJ/7 kW-class high-Tc SMES system
    Ren, L.
    Tang, Y.
    Shi, J.
    Chen, N.
    Li, J.
    Cheng, S.
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2008, 468 (15-20): : 2115 - 2118
  • [7] Design and performance evaluation of a novel 1 kW-class hydrogen production/power generation system
    Choi, Bokkyu
    Panthi, Dhruba
    Nakoji, Masateru
    Tsutsumi, Kaduo
    Tsutsumi, Atsushi
    APPLIED ENERGY, 2017, 194 : 296 - 303
  • [8] Experimental Analysis for Thermal Performance of Heat Distribution System in hot BoP of 2 kW-class SOFC
    Kim, Y. B.
    Kim, E.
    Yoon, J.
    Song, H. W.
    FUEL CELLS, 2019, 19 (04) : 354 - 360
  • [9] Design and Operational Test of Large-sized HTS Magnets with Conduction Cooling System for a 300 kW-class Superconducting Induction Heater
    Jongho Choi
    S. K. Kim
    Sangho Cho
    Minwon Park
    In-Keun Yu
    MRS Advances, 2018, 3 (54) : 3189 - 3200
  • [10] Design and Operational Test of Large-sized HTS Magnets with Conduction Cooling System for a 300 kW-class Superconducting Induction Heater
    Choi, Jongho
    Kim, S. K.
    Cho, Sangho
    Park, Minwon
    Yu, In-Keun
    MRS ADVANCES, 2018, 3 (54): : 3189 - 3200