Novel Flexible Nanocrystalline Flake Ribbons for High-Frequency Transformer Design

被引:12
|
作者
Li, Xinru [1 ]
Jiang, Chaoqiang [1 ]
Zhao, Hui [1 ]
Wen, Bo [1 ]
Jiang, Yunlei [1 ]
Long, Teng [1 ]
机构
[1] Univ Cambridge, Dept Engn, Cambridge, England
基金
英国工程与自然科学研究理事会;
关键词
novel nanocrystalline material; core loss; magnetic component; high-frequency (HF) transformer; dual active bridge (DAB) converter; DC-DC CONVERTER;
D O I
10.1109/APEC42165.2021.9487151
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The eddy current loss for nanocrystalline alloys is detrimental at high frequencies due to the low material resistivity. Novel flexible nanocrystalline flake ribbons fabricated from Fe-based nanocrystalline alloys are introduced to solve the problem. In this paper, the manufacturing process of a novel material and the mechanism of reducing eddy current loss are described. The material characterisation and magnetic measurement of nanocrystalline flake ribbons are given. The core losses of nanocrystalline flake ribbons and conventional nanocrystalline ribbons are compared. The experimental results show that the core losses of nanocrystalline flake ribbons decrease by 30% compared to the corresponding nanocrystalline ribbons. Following an optimal design procedure, high frequency (HF) transformers built by the flake ribbons and ferrites are tested in a 1.2 kW DAB converter, and the core losses are reduced by over 50% compared with ferrite transformers.
引用
收藏
页码:2891 / 2896
页数:6
相关论文
共 50 条
  • [1] Optimization Design and Experimental Verification of Nanocrystalline High-frequency Transformer
    Zhang, Pengning
    Li, Wei
    Li, Pengyang
    Yang, Yajin
    Li, Bofan
    Zhang, Jian
    Gaodianya Jishu/High Voltage Engineering, 2024, 50 (10): : 4475 - 4486
  • [2] Gapless Transformer Design by Using Nanocrystalline Flake Ribbon
    Li, Xinru
    Ren, Xufu
    Luo, Zhichao
    Hu, Borong
    Liu, Chao
    Jiang, Chaoqiang
    Long, Teng
    IEEE JOURNAL OF EMERGING AND SELECTED TOPICS IN POWER ELECTRONICS, 2025, 13 (01) : 798 - 808
  • [3] Design and Optimization of High Frequency Transformer with Nanocrystalline Core
    Liu, Xiaojing
    Wang, Tingting
    Hu, Lian
    Chen, Xianda
    Liu, Ning
    Chen, Long
    2019 4TH INTERNATIONAL CONFERENCE ON INTELLIGENT GREEN BUILDING AND SMART GRID (IGBSG 2019), 2019, : 246 - 249
  • [4] Thermal annealing dependence of high-frequency magnetoimpedance in amorphous and nanocrystalline FeSiBCuNb ribbons
    Hernando, B.
    Prida, V. M.
    Sanchez, M. L.
    Olivera, J.
    Garcia, C.
    Santos, J. D.
    Alvarez, P.
    Sanchez Li, J. L.
    Perov, N.
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2008, 8 (06) : 2873 - 2882
  • [5] Design and Implementation of A novel High-frequency Current Transformer for Partial Discharge Measurements
    Yan, Xuewen
    Cheng, Chen
    Hu, Juan
    Bai, Yuanyuan
    Zhang, Wenwen
    IEICE ELECTRONICS EXPRESS, 2023, 20 (23):
  • [6] Permeability-Adjustable Nanocrystalline Flake Ribbon in Customized High-Frequency Magnetic Components
    Luo, Zhichao
    Li, Xinru
    Jiang, Chaoqiang
    Li, Zongzhen
    Long, Teng
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2024, 39 (03) : 3477 - 3485
  • [7] Insulation Design on High-Frequency Transformer for Solid-State Transformer
    Li, Zheqing
    Hsieh, Yi-Hsun
    Li, Qiang
    Lee, Fred C.
    Zhao, Chunyang
    2021 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2021, : 1149 - 1155
  • [8] Optimum design of a high-power, high-frequency transformer
    Petkov, R
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 1996, 11 (01) : 33 - 42
  • [9] High-Frequency Current Transformer Design and Construction Guide
    Fritsch, Martin
    Wolter, Martin
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2022, 71
  • [10] Optimized transformer design: Inclusive of high-frequency effects
    Hurley, WG
    Wolfle, WH
    Breslin, JG
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 1998, 13 (04) : 651 - 659