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J-GLOBAL ID:201501001695677636   Update date: Sep. 09, 2024

Endo Takahiro

Endo Takahiro
Affiliation and department:
Research field  (2): Mechanics and mechatronics ,  Human interfaces and interactions
Research keywords  (4): Control ,  Haptics ,  Mechatronics ,  Robotics
Research theme for competitive and other funds  (9):
  • 2024 - 2026 閾値下の機械ノイズと電気ノイズによる高感度な能動触知覚の実現
  • 2020 - 2025 能動触時の触感覚向上機能の実現とVR触診訓練システムの開発
  • 2020 - 2025 能動触時の触感覚向上機能の実現とVR触診訓練システムの開発
  • 2022 - 2024 Enhancing fingertip haptic sensitivity by cooling skin temperature effect and using stochastic resonance
  • 2017 - 2021 Training of fine motor skill in fingers with improved haptic sensation
Show all
Papers (63):
  • Komi Chamnongthai, Zhu Li, Takahiro Endo. Band-Limited Vibrotactile Noise Enhances Fingertip Haptic Sensation. ASME J. Comput. Inf. Sci. Eng. 2024. 24. 6
  • Komi Chamnongthai, Takahiro Endo, Fumitoshi Matsuno. Two-finger Stiffness Discrimination with the Stochastic Resonance Effect. ACM Transactions on Applied Perception. 2024. 21. 2. 1-17
  • Hosuk Yeon, Kazuki Umemoto, Susumu Shimizu, Takahiro Endo, Fumitoshi Matsuno, Kazuma Mizuki. Control system design for a class of non-cascade nonlinear under-actuated systems with an application to a rotary crane system. Mechatronics. 2023. 96. 103087-103087
  • Shintaro Iwamura, Yoshiki Mizukami, Takahiro Endo, Fumitoshi Matsuno. Cable path optimization by fixing multiple guides on one link for industrial robot arms. The International Journal of Advanced Manufacturing Technology. 2023. 129. 9-10. 4275-4292
  • Takahiro Endo, Dong-Hwan Kim, Komi Chamnongthai. Enhancing Fingertip Tactile Sensitivity by Vibrotactile Noise and Cooling Skin Temperature Effect. IEEE Transactions on Haptics. 2023. 16. 3. 391-399
more...
MISC (49):
  • Takahiro Endo, Komi Chamnongthai. Enhancement of fingertip haptic sensation by band-limited vibrotactile noise. Proc. of SAMCON2023. 2023. 658-661
  • Yuto Fukao, Takahiro Endo, Fumitoshi Matsuno, Yoshihiro Morimoto, Takumi Koshimoto, Daisuke Mizuno. Cooperative Transportation of an Object with a Nonholonomic Velocity Constraint by Multiple Decentralized Autonomous Robots. Proc. of AROB-ISBC-SWARM2023. 2023. 1451-1452
  • Dong Hwan Kim, Takahiro Endo, Fumitoshi Matsuno. Improvement of Fingertip Tactile Sensation Utilizing the Effect of Cooling Skin Temperature. Proc. of the 8th IEEJ international workshop on Sensing, Actuation, Motion Control, and Optimization (SAMCON2022). 2022. 542-545
  • Yuto Fukao, Naoya Kubo, Takahiro Endo, Fumitoshi Matsuno. Distributed cooperative transportation control of swarm robot with grasping mechanism in the two-dimensional environment. Proc. of AROB-ISBC-SWARM2022. 2022. 1824-1827
  • Kazuki Umemoto, Takahiro Endo, Fumitoshi Matsuno. Domain of Attraction Estimation for Nonlinear Systems with Parametric Uncertainty via State Transformation. Proc. of AROB-ISBC-SWARM2022. 2022. 261-265
more...
Patents (14):
Books (7):
  • Chapter 7: WAREC-1 - A Four-Limbed Robot with Advanced Locomotion and Manipulation Capabilities
    Disaster Robotics, S. Tadokoro (Ed), Springer 2019
  • 3.5.3章 触覚センサ
    松野, 大須賀, 松原, 野田, 稲見 編, ロボット制御学ハンドブック, 株式会社近代科学社 2017
  • Chapter 16: Force Perception of Human Finger Using a Multi-Fingered Haptic Interface
    R. Balasubramanian and V. J. Santos (Eds), The Human Hand as an Inspiration for Robot Hand Development, Springer 2014
  • Chapter 5: HIRO: Multi-fingered Haptic Interface Robot and Its Medical Application Systems
    I. Galiana and M. Ferre (Eds), Multi-finger Haptic Interaction, Springer-Verlag London 2013
  • Chapter 6: Development of a Finger Pad Force Display for a Hand Haptic Interface
    Jae-Jin Kim (Ed), Virtual Reality, InTech 2011
more...
Lectures and oral presentations  (8):
  • リンク長が可変なワイヤ駆動式マニピュレータの開発と制御-Development and control of wire-driven manipulator with variable link length
    (システム制御情報学会研究発表講演会講演論文集 2018)
  • Softness Display by a Flexible Timoshenko Arm
    (2015)
  • 508 Interference Avoidance by a Side-Faced-Type Multi-Fingered Haptic Interface
    (2014)
  • J028012 Force Display by a Side-Faced-Type Multi-Fingered Haptic Interface
    (Mechanical Engineering Congress, Japan 2013)
  • 618 The learning method of the finger-tip position, finger-tip force using Multi-Fingered Haptic Device
    (2013)
more...
Professional career (1):
  • 博士(工学)
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