Improving Thermal Performance of High Frequency Power Transformers using Bobbinless Transformer Design

被引:0
|
作者
Dey, Anshuman [1 ]
Shafiei, Navid [2 ]
Khandekar, Rahul [2 ]
Eberle, Wilson [1 ]
Li, Ri [1 ]
机构
[1] Univ British Columbia, Kelowna, BC V1V 1V7, Canada
[2] Alpha Technol Ltd, Burnaby, BC V5J 5M4, Canada
基金
加拿大自然科学与工程研究理事会;
关键词
Thermal Management; Power Transformer; Multiphysics Modeling; Finite Element Analysis;
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
Power transformer windings in most Switch Mode Power Supplies (SMPS) are conventionally wound around a plastic bobbin. Bobbins are support structures for the windings and provide electrical insulation between the winding and core. They are generally made from plastics like Polytetrafluoroethylene (PTFE), characteristic of low thermal conductivity (k similar to 0.25 W/mK). Hence, using a bobbin creates a large thermal resistance between the windings and the core. The present paper investigates the benefit of removing the bobbin on the thermal performance of a 3.3kW power transformer fabricated on a PQ4040 core. The modelling is carried out through coupled 3D multiphysics Finite Element Analysis (FEA). First, the electromagnetic model accurately evaluates the spatial distribution of core losses for given operating conditions (core material, frequency, primary voltage and current, etc.) and the evaluated core losses are coupled to the thermal model. The winding losses are also evaluated. Next, the thermal model predicts the temperature distribution in the power transformer based on the loss inputs from the electromagnetic simulation as well as the material and geometrical properties of the transformer. The thermal model accounts for all modes of heat transfer. Further, feedback is established between the electromagnetic and thermal model to account for changes in temperature dependent electromagnetic properties. The evaluated thermal performance of the bobbin and bobbinless transformers are then compared. The FEA result shows that bobbinless transformers have lower hot spot temperatures as compared to transformers with bobbins. Further, bobbinless transformers have a smaller temperature difference between windings and core (T-winding-T-core) as compared to transformers with bobbins, indicating lower thermal resistance between winding and core. Finally, the findings are experimentally validated on a 3.3kW SMPS platform with thermocouple measurements and Infrared (IR) Thermography. Bobbinless transformers are shown to be low cost and thermally superior alternatives to their conventional counterparts.
引用
收藏
页码:291 / 297
页数:7
相关论文
共 50 条
  • [1] Improved Thermal Design of a High Frequency Power Transformer
    Stadler, Alexander
    Gulden, Christof
    PROCEEDINGS OF THE 2011-14TH EUROPEAN CONFERENCE ON POWER ELECTRONICS AND APPLICATIONS (EPE 2011), 2011,
  • [2] Design for better thermal management in high-power high-frequency transformers
    Pavlovsky, M
    de Haan, SWH
    Ferreira, JA
    Conference Record of the 2005 IEEE Industry Applications Conference, Vols 1-4, 2005, : 2615 - 2621
  • [3] High-Performance Thermal Management for High-Power High-Frequency Transformers
    Pavlovsky, M.
    de Haan, S. W. H.
    Ferreira, J. A.
    EPE JOURNAL, 2009, 19 (02) : 20 - 27
  • [4] Design considerations of a high frequency power transformer
    Razak, ARA
    Taib, S
    NATIONAL POWER ENGINEERING CONFERENCE PECON 2003, PROCEEDINGS, 2003, : 243 - 248
  • [5] A High Power High Frequency Transformer Design for Solid State Transformer Applications
    El Shafei, Ahmad
    Ozdemir, Saban
    Altin, Necmi
    Jean-Pierre, Garry
    Nasiri, Adel
    2019 8TH INTERNATIONAL CONFERENCE ON RENEWABLE ENERGY RESEARCH AND APPLICATIONS (ICRERA 2019), 2019, : 904 - 909
  • [6] Design of a Medium Frequency, High Voltage Transformer for Power Electronic Transformer
    Zhang, Juanjuan
    Du, Yumei
    Li, Zixin
    Wang, Ping
    2014 IEEE TRANSPORTATION ELECTRIFICATION CONFERENCE AND EXPO (ITEC) ASIA-PACIFIC 2014, 2014,
  • [7] Design Guidelines for High-Power and High-Frequency Transformers
    Salinas, Guillermo
    Gimenez, Alvaro
    Oliver, Jesus A.
    Prieto, Roberto
    THIRTY-FOURTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC 2019), 2019, : 1423 - 1429
  • [8] Thermal Design Consideration of Medium Voltage High Frequency Transformers
    Wang, Haoming
    Guo, Zhichen
    Tayebi, S. Milad
    Zhao, Xin
    Huang, Qingyun
    Yu, Ruiyang
    Yang, Qingxin
    Li, Yongjian
    Huang, Alex Q.
    2020 THIRTY-FIFTH ANNUAL IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION (APEC 2020), 2020, : 2721 - 2726
  • [9] Winding Design of a High Power Medium Frequency Transformer
    Iyer, Kartik V.
    Robbins, William P.
    Mohan, Ned
    2014 INTERNATIONAL SYMPOSIUM ON POWER ELECTRONICS, ELECTRICAL DRIVES, AUTOMATION AND MOTION (SPEEDAM), 2014, : 665 - 669
  • [10] Design principles for high frequency power transformer materials
    Bogs, M
    Holubarsch, W
    JOURNAL DE PHYSIQUE IV, 1997, 7 (C1): : 117 - 118