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Asai Takehiko  浅井 健彦

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Takehiko Asai  浅井 健彦

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Researcher Number 90775793
Other IDs
Affiliation (Current) 2025: 筑波大学, システム情報系, 准教授
Affiliation (based on the past Project Information) *help 2019 – 2024: 筑波大学, システム情報系, 准教授
2016 – 2019: 筑波大学, システム情報系, 助教
2017: 筑波大学, システム情報工学研究科, 助教
Review Section/Research Field
Principal Investigator
Building structures/Materials / Medium-sized Section 23:Architecture, building engineering, and related fields / Basic Section 23010:Building structures and materials-related / Medium-sized Section 24:Aerospace engineering, marine and maritime engineering, and related fields
Except Principal Investigator
Building structures/Materials
Keywords
Principal Investigator
制振 / 同調回転慣性質量機構 / エネルギーハーベスティング / 同調回転慣性質量トランスデューサー / 深層強化学習 / イナーター / 再生可能エネルギー / トランスデューサー / セルフパワード制振 / モデル予測制御 … More / 同調回転慣性質量 / 波力発電装置 / 浮体式洋上風車 / 波力発電 / 同調回転慣性質量効果 / 構造制御 / 制振装置 / 振動制御 / 機械力学・制御 / 建築構造・材料 … More
Except Principal Investigator
ハーベスティング / エネルギー / 回転慣性質量 / TMD / 制振 / エネルギーハーベスティング / 質量比 / 同調回転慣性質量機構 / 発電 / TMD / 振動制御 / 大質量比 / エナジーハーベスティング / 同調慣性質量 Less
  • Research Projects

    (6 results)
  • Research Products

    (19 results)
  • Co-Researchers

    (3 People)
  •  深層強化学習による建築構造物の振動制御分野におけるパラダイムシフトへの挑戦Principal Investigator

    • Principal Investigator
      浅井 健彦
    • Project Period (FY)
      2024 – 2026
    • Research Category
      Grant-in-Aid for Challenging Research (Exploratory)
    • Review Section
      Medium-sized Section 23:Architecture, building engineering, and related fields
    • Research Institution
      University of Tsukuba
  •  可変型同調回転慣性質量トランスデューサーを用いたリアルタイムハイブリッド実験Principal Investigator

    • Principal Investigator
      浅井 健彦
    • Project Period (FY)
      2021 – 2024
    • Research Category
      Grant-in-Aid for Early-Career Scientists
    • Review Section
      Basic Section 23010:Building structures and materials-related
    • Research Institution
      University of Tsukuba
  •  Development of a smart wave energy converter with tuned variable inertial massPrincipal Investigator

    • Principal Investigator
      Asai Takehiko
    • Project Period (FY)
      2018 – 2022
    • Research Category
      Grant-in-Aid for Challenging Research (Exploratory)
    • Review Section
      Medium-sized Section 24:Aerospace engineering, marine and maritime engineering, and related fields
    • Research Institution
      University of Tsukuba
  •  Development and experimental verification of tuned inertial mass electromagnetic transducersPrincipal Investigator

    • Principal Investigator
      Asai Takehiko
    • Project Period (FY)
      2017 – 2019
    • Research Category
      Grant-in-Aid for Young Scientists (A)
    • Research Field
      Building structures/Materials
    • Research Institution
      University of Tsukuba
  •  自己発電型制振システムの実時間ハイブリッド実験Principal Investigator

    • Principal Investigator
      浅井 健彦
    • Project Period (FY)
      2016 – 2017
    • Research Category
      Grant-in-Aid for Research Activity Start-up
    • Research Field
      Building structures/Materials
    • Research Institution
      University of Tsukuba
  •  Development of energy harvesting technique from large scale structural vibration using large mass ratio TMD

    • Principal Investigator
      Araki Yoshikazu
    • Project Period (FY)
      2014 – 2017
    • Research Category
      Grant-in-Aid for Challenging Exploratory Research
    • Research Field
      Building structures/Materials
    • Research Institution
      Kyoto University

All 2023 2022 2021 2020 2019 2018 2017 2015

All Journal Article Presentation Patent

  • [Journal Article] Numerical study of a point absorber wave energy converter with tuned variable inerter2022

    • Author(s)
      Y. Nemoto, M. Takino, S. Tsukamoto, T. Asai
    • Journal Title

      Ocean Engineering

      Volume: 257 Pages: 111696-111696

    • DOI

      10.1016/j.oceaneng.2022.111696

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-18K18908
  • [Journal Article] Development and performance evaluation of an electromagnetic transducer with a tuned variable inerter2022

    • Author(s)
      Takino Minoru、Asai Takehiko
    • Journal Title

      Journal of Vibration and Control

      Volume: - Issue: 9-10 Pages: 2035-2048

    • DOI

      10.1177/10775463221074078

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-17H04942
  • [Journal Article] Feasibility Study of Actively-Controlled Tuned Inertial Mass Electromagnetic Transducers for Seismic Protection2022

    • Author(s)
      T. Asai, Y. Taketomi
    • Journal Title

      Journal of Earthquake Engineering

      Volume: - Issue: 12 Pages: 3588-3606

    • DOI

      10.1080/13632469.2022.2142332

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-21K14285
  • [Journal Article] Numerical evaluation of a two-body point absorber wave energy converter with a tuned inerter2021

    • Author(s)
      Asai Takehiko、Sugiura Keita
    • Journal Title

      Renewable Energy

      Volume: 171 Pages: 217-226

    • DOI

      10.1016/j.renene.2021.02.021

    • NAID

      120007132516

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-18K18908
  • [Journal Article] Enhanced power absorption of a point absorber wave energy converter using a tuned inertial mass2020

    • Author(s)
      Haraguchi Ruriko、Asai Takehiko
    • Journal Title

      Energy

      Volume: 202 Pages: 117740-117740

    • DOI

      10.1016/j.energy.2020.117740

    • NAID

      120007127743

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-18K18908
  • [Journal Article] Wave flume testing of an oscillating-body wave energy converter with a tuned inerter2020

    • Author(s)
      Sugiura Keita、Sawada Ryoko、Nemoto Yudai、Haraguchi Ruriko、Asai Takehiko
    • Journal Title

      Applied Ocean Research

      Volume: 98 Pages: 102127-102127

    • DOI

      10.1016/j.apor.2020.102127

    • NAID

      120007127790

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-18K18908
  • [Journal Article] Experimental characterization and performance improvement evaluation of an electromagnetic transducer utilizing a tuned inerter2019

    • Author(s)
      Sugiura Keita、Watanabe Yuta、Asai Takehiko、Araki Yoshikazu、Ikago Kohju
    • Journal Title

      Journal of Vibration and Control

      Volume: 26 Issue: 1-2 Pages: 56-72

    • DOI

      10.1177/1077546319876396

    • NAID

      120007127854

    • Peer Reviewed / Open Access / Int'l Joint Research
    • Data Source
      KAKENHI-PROJECT-18H01577, KAKENHI-PROJECT-17H04942
  • [Journal Article] Energy harvesting potential of tuned inertial mass electromagnetic transducers2017

    • Author(s)
      Asai Takehiko、Araki Yoshikazu、Ikago Kohju
    • Journal Title

      Mechanical Systems and Signal Processing

      Volume: 84 Pages: 659-672

    • DOI

      10.1016/j.ymssp.2016.07.048

    • NAID

      120007135286

    • Data Source
      KAKENHI-PROJECT-26630256
  • [Journal Article] Structural control with tuned inertial mass electromagnetic transducers2017

    • Author(s)
      Asai Takehiko、Araki Yoshikazu、Ikago Kohju
    • Journal Title

      Structural Control and Health Monitoring

      Volume: 25 Issue: 2 Pages: e2059-e2059

    • DOI

      10.1002/stc.2059

    • NAID

      120007127853

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-17H04942, KAKENHI-PROJECT-26630256
  • [Journal Article] Outrigger tuned inertial mass electromagnetic transducers for high-rise buildings subject to long period earthquakes2017

    • Author(s)
      Asai Takehiko、Watanabe Yuta
    • Journal Title

      Engineering Structures

      Volume: 153 Pages: 404-410

    • DOI

      10.1016/j.engstruct.2017.10.040

    • NAID

      120007134568

    • Peer Reviewed
    • Data Source
      KAKENHI-PROJECT-17H04942
  • [Patent] 波力発電装置及び波力発電方法2018

    • Inventor(s)
      浅井健彦、荒木慶一、原口瑠理子
    • Industrial Property Rights Holder
      浅井健彦、荒木慶一、原口瑠理子
    • Industrial Property Rights Type
      特許
    • Filing Date
      2018
    • Data Source
      KAKENHI-PROJECT-18K18908
  • [Presentation] 深層強化学習による同調可変型回転慣性質量トランスデューサーの 制振性能の検証2023

    • Author(s)
      浅井健彦
    • Organizer
      日本地震工学シンポジウム
    • Data Source
      KAKENHI-PROJECT-21K14285
  • [Presentation] 深層強化学習による可変型イナーター機構をもつ制振装置の制御手法の検討2023

    • Author(s)
      浅井健彦
    • Organizer
      日本建築学会大会
    • Data Source
      KAKENHI-PROJECT-21K14285
  • [Presentation] Nonlinear model predictive control strategies for electromagnetic transducers with a tuned variable inerter2022

    • Author(s)
      T. Asai
    • Organizer
      the Eighth World Conference on Structural Control and Monitoring
    • Data Source
      KAKENHI-PROJECT-21K14285
  • [Presentation] 可変型イナーター機構をもつ制振装置のためのモデル予測制御の応用可能性の検討2022

    • Author(s)
      浅井健彦
    • Organizer
      日本建築学会大会
    • Data Source
      KAKENHI-PROJECT-21K14285
  • [Presentation] モデル予測制御による同調回転慣性質量トランスデューサーの最適制御2021

    • Author(s)
      浅井健彦
    • Organizer
      第 17 回「運動と振動の制御」シンポジウム (MoViC2021)
    • Data Source
      KAKENHI-PROJECT-17H04942
  • [Presentation] 可変型同調回転慣性質量機構をもつ可動物体型波力発電装置2020

    • Author(s)
      根元雄大,杉浦啓太,瀧野稔,浅井健彦
    • Organizer
      Dynamics and Design Conference 2020
    • Data Source
      KAKENHI-PROJECT-18K18908
  • [Presentation] 同調回転慣性質量機構をもつ可動物体型波力発電装置における性能保証制御の有効性の数値的検証2019

    • Author(s)
      杉浦 啓太, 原口 瑠理子, 浅井 健彦
    • Organizer
      Dynamics and Design Conference 2019
    • Data Source
      KAKENHI-PROJECT-18K18908
  • [Presentation] Outrigger Tuned Viscous Mass Damping System for High-rise Buildings Subject to Earthquake Loadings2015

    • Author(s)
      Takehiko Asai, Kohju Ikago, Yoshikazu Araki
    • Organizer
      6AESE/11ANCRiSST Joint Conference
    • Place of Presentation
      Urbana, IL, USA
    • Year and Date
      2015-08-02
    • Int'l Joint Research
    • Data Source
      KAKENHI-PROJECT-26630256
  • 1.  Araki Yoshikazu (50324653)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 2 results
  • 2.  Ikago Khoju (20521983)
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 3 results
  • 3.  Haraguchi Ruriko
    # of Collaborated Projects: 1 results
    # of Collaborated Products: 0 results

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