Rchr
J-GLOBAL ID:201801014566187719   Update date: Feb. 01, 2024

Hijikata Kimio

ヒジカタ キミオ | Hijikata Kimio
Affiliation and department:
Research field  (2): Control and systems engineering ,  Electrical power engineering
Research keywords  (4): Electric motors ,  Magnetic bearings ,  Bearingless motors ,  Magnetic levitation
Research theme for competitive and other funds  (8):
  • 2021 - 2024 Development of a novel high-speed motor in which the rotor rotates faster than the rotating magnetic field
  • 2019 - 2022 Investigation of the limit of Earnshaw's theorem in bearigless motors.
  • 2019 - 2021 Ripple reduction of torque and suspension force in magnetic levitation machines that enable low speed and high torque drive
  • 2017 - 2019 低速高トルク用途向けリラクタンス型磁気浮上回転機の実用化に向けた構造最適化の検討
  • 2016 - 2019 一軸制御ベアリングレスモータの高度化に関する研究
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Papers (12):
  • Keigo SEKITA, Kimio HIJIKATA, Yasuhiro TANAKA. Reluctance Motor Rotate at a Faster Rate than Rotating Magnetic Field. Journal of the Japan Society of Applied Electromagnetics and Mechanics. 2021. 29. 2. 232-238
  • Y. Tanaka, D. Hanazawa, K. Hijikata, H. Miyake, T. Takada. Current Integrated Charge Measurement Evaluation of Insulation Layer for Power Module using DC Current Integrated Charge Measurement. 2020 IEEE 3rd International Conference on Dielectrics (ICD). 2020
  • Daiki Hanazawa, Maimi Mima, Kimio Hijikata, Hiroaki Miyake, Yasuhiro Tanaka, Tatsuo Takada. Evaluation of Electric Charge Accumulation in Insulation Layer of Power Module using Direct Current Integrated Charge Measurement. 2019 IEEE International Workshop on Integrated Power Packaging (IWIPP). 2019
  • Masahito Miyoshi, Kimio Hijikata, Hiroaki Miyake, Yasuhiro Tanaka. Charge accumulation characteristics of fluorine insulating materials under electron beam irradiation. IEEJ Transactions on Fundamentals and Materials. 2019. 139. 2. 113-118
  • Maimi Mima, Daiki Hanazawa, Kimio Hijikata, Hiroaki Miyake, Yasuhiro Tanaka, Tatsuo Takada, Takashi Inoue. Electric charge accumulation properties in packaged insulation layer of power electronic devices by using direct current integrated charge method. IEEJ Transactions on Fundamentals and Materials. 2019. 139. 4. 197-204
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MISC (26):
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Books (1):
  • 磁気浮上技術の原理と応用
    科学情報出版 2018 ISBN:9784904774656
Education (3):
  • 2008 - 2013 Hokkaido University Grad. Sch. of Information Science and Technology Div. of Systems Science and Informatics
  • 2006 - 2008 Musashi Institute of Technology Grad. Sch. of Eng. Div. of Mech. Sys. Eng.
  • 2002 - 2006 Musashi Institute of Technology Fac. of Eng. Dept. of Mech. Sys. Eng.
Professional career (1):
  • 博士(工学) (北海道大学)
Work history (2):
  • 2018/04 - 現在 Tokyo City University Dept. of Mech. Sys. Eng. Lecturer
  • 2013/04 - 2018/03 Tokyo City University Dept. of Mech. Sys. Eng. Research associate
Committee career (5):
  • 2021/07 - 現在 電気学会 SDGsの達成を加速する磁気浮上・磁気支持技術調査専門委員会
  • 2017/11 - 2021/04 電気学会 磁気浮上・磁気支持に関する ICT 応用技術調査専門委員会
  • 2016/04 - 2019 公益社団法人 自動車技術会 モータ技術部委員会
  • 2014/11 - 2017/10 電気学会 磁気浮上技術調査専門委員会
  • 2013/06 - 2014/10 電気学会 環境調和型磁気支持応用技術の体系化調査専門委員会
Association Membership(s) (4):
THE JAPAN SOCIETY OF APPLIED ELECTROMAGNETICS AND MECHANICS ,  The Institute of Electrical and Electronics Engineers ,  THE INSTITUTE OF ELECTRICAL ENGINEERS OF JAPAN ,  自動車技術会
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