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Hisa-Aki Tanaka

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Hisa-Aki Tanaka
Native name田中久陽
Born
🏳️ NationalityJapan
🏫 EducationWaseda University (B.E., M.E., and D.E.)
💼 Occupation


Hisa-Aki Tanaka (Japanese: 田中久陽, Hepburn: Tanaka Hisaaki) is a scientist and engineer. He is known for his contributions to the extension of the Kuramoto equation, theoretically predicting self-synchronization with hysteretic responses, for instance, in synchronous power generators.[1][2] Tanaka also discovered the fundamental limit of injection locking in general oscillators, which is a mathematical framework useful for designing more frequency-stable electrical oscillators. [3]

Biography[edit]

Hisa-Aki Tanaka received the B.E. degree in electrical engineering and the M.E. and D.E. degrees in electronics and communication engineering from Waseda University, Tokyo, Japan, in 1990, 1992, and 1995, respectively[4]. From 1996 to 1997, he was a Visiting Researcher with the EECS Department, University of California, Berkeley. From 1997 to 2001, he was with the Sony Computer Science Laboratory. In 2001, he joined the Department of Electronic Engineering, Faculty of Electro-Communications, The University of Electro-Communications, Tokyo, Japan, as an Associate Professor. [5] His current research interests include synchronization issues in computing and communication systems and nonlinear physics. Dr. Tanaka received the 1995–1997 Research Fellowships of the Japan Society for the Promotion for Young Scientists. He was the recipient of the 2007, 2008, and 2010 Best Paper Award from the Telecommunications Advancement Foundation. He received the NOLTA Society Contribution Award for his contributions to establishing a new technical committee, the Complex Communication Sciences (CCS), from IEICE in 2015.[6]

Honors and awards[edit]

  • IEICE Best PaperAward (2020)[3][7]
  • IEICE NOLTA Society:Contribution Award (2015)
  • IEICE Technical Committee on AdHoc Networks Young Researcher's Award (2009)
  • Telecom System Technology Award (2008)
  • IEICE Technical Committee on AdHoc Networks Young Researcher's Award (2008)
  • Telecom System Technology Award (2007)

References[edit]

  1. 「周期外力による同期現象は, 物理学, 工学, 生物学をはじめ自然科学の広範な分野に現れる重要な現象である. 一つの重要な一般的問題として, 与えられた振動子に対してどのような波形をもつ周期外力が最も効率よく, あるいは効果的に同期を実現するかという問題がある. Tanakaらをはじめとする研究者達によって, 位相記述にもとづくこのような問題への取り組みが近年活発になされている.」蔵本由紀・河村洋史『同期現象の科学』 (Kuramoto, Yoshiki and Kawamura, Yoji , SCIENCE OF SYNCHRONIZATION, Kyoto University Press), 2017 (in Japanese)
  2. "Back in 1996, when Hisa-Aki Tanaka et al. [131] studied the self-organizing synchronization of the second-order Kuramoto model with hysteresis effect, they boldly speculated on its possible application in interconnected power grids." (https://ieeexplore.ieee.org/stamp/stamp.jsp?arnumber=9165975&tag=1)
  3. 3.0 3.1 Best Paper Award, “A Design and Its Experimental Verification of Optimal Input Waveforms Maximizing Locking Ranges for an Injection-Locked Class-E Oscillator.” (https://www.ieice.org/eng/about_ieice/new_honorary_members_award_winners/2019/ronbun_01e.html)
  4. Waseda University Repository (https://waseda.repo.nii.ac.jp/?action=pages_view_main&active_action=repository_view_main_item_detail&item_id=17671&item_no=1&page_id=13&block_id=21)
  5. Faculty members, The University of Electro-Communications (http://kjk.office.uec.ac.jp/Profiles/6/0000567/prof_e.html)
  6. IEEE Xplore; Author Information (https://ieeexplore.ieee.org/author/37336273600)
  7. 矢部洋司, 欧陽有界, 中川正基, 宇都宮健介, 永島和治, 関屋大雄, 田中久陽, 「注入同期型E 級発振器のロックレンジを最大化する入力波形の設計と実験検証」, 電子情報通信学会論文誌A, vol. J101-A, no. 10, pp. 250-259, 2018年10月. (Yoji Yabe, Youjie Ouyang, Masaki Nak- agawa, Kensuke Utsunomiya, Tomoharu Nagashima, Hiroo Sekiya, and Hisa-Aki Tanaka, "A Design and Its Experimental Verification of Optimal Input Waveforms Maximizing Locking Ranges for an Injection-Locked Class-E Oscillator," Trans. IEICE A, vol. J101-A, no. 10, pp. 250-259, Oct. 2018.) (https://search.ieice.org/bin/summary.php?id=j101-a_10_250&category=A&year=2018&lang=J&abst=)

Hisa-Aki Tanaka[edit]


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