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J-GLOBAL ID:200901092437114471   Update date: Mar. 04, 2024

Hotta Masashi

ホッタ マサシ | Hotta Masashi
Affiliation and department:
Job title: Associate Professor
Other affiliations (1):
  • Yamaguchi University  Faculty of Engineering Department of Electrical and Electronic Engineering   Associate Professor
Homepage URL  (1): https://mhotta.jimdo.com/
Research field  (6): Other ,  Applied physics - general ,  Optical engineering and photonics ,  Electronic devices and equipment ,  Electric/electronic material engineering ,  Computational science
Research keywords  (10): Electromagnetic Theory, Microwave and Millimeter-wave Engineering, Single-Negative Metamaterial, Opto-Electronics, Wireless Power Transfer System ,  Wireless Power Transfer System ,  メタマテリアル ,  マイクロ波・ミリ波工学 ,  光エレクトロニクス ,  電磁界理論 ,  Opto-Electronics ,  Single-Negative Metamaterial ,  Microwave and Millimeter-wave Engineering ,  Electromagnetic Theory
Research theme for competitive and other funds  (10):
  • 2017 - 2019 Fabrication of Planar Spiral Resonator by using Dielectric Substrate for Resonator-Coupled type Wireless Power Transfer System
  • 2016 - 2017 アームロボットへの電力と制御信号同時伝送
  • 2011 - 2013 Efficient measurement system for complex material parameters of practical anisotropic metamaterial
  • 2006 - 2008 Analysis of Electromagnetic Field in Artificial Materials and its Application for Novel Microwave Devices
  • 2003 - 2004 空気ギャップ構造導入によるマイクロ波平面回路の漏れ波損失低減に関する研究
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Papers (156):
  • Ukyo Aibara, Yunosuke Fujimoto, Kazuki Chikaraishi, Yuka Shimadu, Masashi Hotta. Fundamental Study on Resonator-Coupled Type Wireless Power Transmission Systems Using Dual-Spiral Resonators with Different Winding Combinations. Proceedings of the 25th IEEE Hiroshima Section Student Symposium. 2023. TP-A-5. 17-21
  • Kenta Horiuchi, Yunosuke Fujimoto, Junichiro Ishikawa, Masashi Hotta. Improvement of Power Transmission Efficiency of Resonator-Coupled Wireless Power Transmission System with Angular Misalignment by Using Spiral Resonators with Lumped Constant Capacitors. Proceedings of the 25th IEEE Hiroshima Section Student Symposium. 2023. TP-A-6. 22-26
  • J. Ishikawa, M. Hotta. Study on the Effect of Pure Water on Resonator-Coupled Wireless Power Transmission System with Angular Misalignment Using Dual Spiral Resonators. Proceedings of the 24th IEEE Hiroshima Section Student Symposium. 2022. TP-C-4. 130-133
  • Y. Fujimoto, M. Hotta. Fundamental Study on Size Reduction of Spiral-Resonators Used for Resonator-Coupled Type Wireless Power Transfer System. Proceedings of the 24th IEEE Hiroshima Section Student Symposiumhe 24th IEEE Hiroshima Section Student Symposium. 2022. TP-C-3. 126-129
  • Nur Syafiera Azreen NORODIN, Kousuke NAKAMURA, Masashi HOTTA. Effects of Lossy Mediums for Resonator-Coupled Type Wireless Power Transfer System using Conventional Single- and Dual-Spiral Resonators. IEICE Transactions on Electronics. 2022. E105-C. 03. 110-117
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MISC (78):
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Patents (9):
  • Optical divider and sensor
  • Optical dividing devices
  • Optical dividing devices
  • 光分岐回路及びセンサ
  • 光分岐デバイス
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Books (2):
  • Fabrication and application technologies of metamaterials and cutting-edge research trends
    Technical Information Instutution, Co.,LTD 2022 ISBN:9784861048760
  • Local development, revitalize the Chugoku region!
    Transactions on IEICE 2016
Lectures and oral presentations  (129):
  • Improvement of Power Transmission Efficiency of Resonator-Coupled Wireless Power Transmission System with Angular Misalignment by Using Spiral Resonators
    (IEEE Hiroshima Section Student Symposium 2023)
  • Fundamental Study on Resonator-Coupled Type Wireless Power Transmission Systems Using Dual-Spiral Resonators with Different Winding Combinations
    (IEEE Hiroshima Section Student Symposium 2023)
  • ”Let others understand your ideas!” From the Standpoint of HISS Steering Committee
    (Lecture of IEEE Hiroshima Section 2023)
  • Fundamental Study on Size Reduction of Spiral-Resonators Used for Resonator-Coupled Type Wireless Power Transfer System
    (IEEE Hiroshima Section Student Symposium 2022)
  • Study on the Effect of Pure Water on Resonator-Coupled Wireless Power Transmission System with Angular Misalignment Using Dual Spiral Resonators
    (IEEE Hiroshima Section Student Symposium 2022)
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Works (19):
  • Invited Lecture of IEEE Hiroshima Section
    Masashi Hotta 2022 - 2022
  • Invited Lecture of IEEE Hiroshima Section
    Masashi Hotta 2021 - 2021
  • Invited Lecture of IEEE Hiroshima Section
    Masashi Hotta 2020 - 2020
  • Invited Lecture of IEEE Hiroshima Section
    Masashi Hotta 2019 - 2019
  • The 20th Anniversary Symposium of IEEE Hiroshima Section
    Masashi Hotta 2018 - 2018
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Education (3):
  • 1995 - 1995 Osaka Prefectural University Graduate School of Engineering Course for Electrical Engineering
  • 1988 - 1990 Ehime University Graduate School of Engineering Course for Electronics
  • 1984 - 1988 Ehime University Faculty of Engineering Department of Electronic Engineering
Professional career (3):
  • Doctor of Engineering (Osaka Prefecture University)
  • Master of Engineering (Ehime University)
  • Bachelor of Engineering (Ehime University)
Work history (24):
  • 2016/04 - 現在 Graduate School of Science & Technology for Innovation Department of Electrical & Electronic Engineering Associate Professor
  • 2015/06 - 2017/06 IEICE Editorial Committee of Journal of IEICE Member
  • 2002/07 - 2016/03 Yamaguchi University Graduate School of Science and Engineering Associate Professor
  • 2013/01 - 2014/12 IEEE Hiroshima Section Committee Member
  • 2011/01/01 - 2012/12/31 IEEE Japan Council Executive Committee Member
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Committee career (59):
  • 2023/01 - 現在 IEEE Japan Council Historical Committee Member
  • 2020/07 - 現在 International Union of Radio Science(URSI) Senior Member
  • 2012 - 現在 IEEE Senior Member
  • 2011 - 現在 The Institute of Electronics, Information and Communication Engineers (IEICE) Senior Member
  • 2008 - 現在 IET Journal of Microwaves, Antennas & Propagation査読委員
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Awards (12):
  • 2019/09 - URSI Japan Committee URSI-JRSM, The 2nd Prize of Student Paper Competition Performance Improvement of Resonator-Coupled type Wireless Power Transfer System using Dual-Spiral Resonator with Angular Misalignments
  • 2019/03 - Graduate School of Sciences & Technology for Innovation Research Encouragement Award
  • 2019/01 - IEEE Hiroshima Section The 2018 IEEE Hiroshima Section Contribution Award
  • 2018/11 - IEEE Hiroshima Section HISS Good Research Award Fundamental Characteristics of Resonator-Coupled Type Wireless Power Transfer System Using Paired Spiral Resonators
  • 2016/11 - IEEE Hiroshima Section HISS Excellent Research Award
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Association Membership(s) (16):
International Union of Radio Science ,  IEICE Chugoku Section ,  IEEE Hiroshima Section ,  宇宙学会(The Planetary Society) ,  米国応用科学学会(AAAS) ,  国際光工学会(SPIE) ,  米国光学会(OSA) ,  IEEE ,  電子情報通信学会 ,  The Planetary Society ,  American Association for the Advancement Science ,  The International Society for Optical Engineering ,  Optical Society of America ,  The Institute of Electrical and Electronics Engineers ,  Information and Communication Engineers (IEICE) ,  The Institute of Electronics
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