Rchr
J-GLOBAL ID:200901048402823462   Update date: Jul. 05, 2024

Sowa Nobuyuki

ソウワ ノブユキ | Sowa Nobuyuki
Affiliation and department:
Job title: Assistant professor
Research field  (1): Mechanics and mechatronics
Research keywords  (2): 機械力学・制御 機械振動学 ,  Mechanics and Control Engineering
Research theme for competitive and other funds  (17):
  • 2022 - 2025 エネルギー条件に立脚した自己同期現象の原理解明と振動機械の合理的設計法の構築
  • 2017 - 2020 Development of a high-performance system of vibration analysis based on a new type of complex modal analysis for a self-excited system and a nonlinear system
  • 2012 - 2015 Operating mechanism and rational optimization of dynamic absorber for a self-excited vibration
  • 2011 - 2013 A Study for Vibration Suppression method of Tool in BTA Deep Hole Drilling Process
  • 2009 - 2011 Clarification of nonlinear characteristics for polygonal pattern formation phenomena in contact rotating systems and their application to prevention method
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Papers (13):
  • Hiroki Mori, Tomohiro Abe, Nobuyuki Sowa, Takahiro Kondou. Analytical method for suboptimal design of dynamic absorber for parametrically excited system. Journal of Sound and Vibration. 2023. 548
  • AMANO Yuki, KONDOU Takahiro, MORI Hiroki, SOWA Nobuyuki. Vibration Control of an Overhead Crane by Elimination of the Natural Frequency Component: (Experimental Verification of Obstacle Avoidance). The Proceedings of Conference of Kyushu Branch. 2019. 2019.72. A23
  • AMANO Yuki, KONDOU Takahiro, MORI Hiroki, SOWA Nobuyuki. Analysis of Self-Excited Vibration Generated in Asymmetric Rotating Shaft with Anisotropic Support. The Proceedings of the Dynamics & Design Conference. 2019. 2019. 161
  • KURIHARA Kai, KONDOU Takahiro, MORI Hiroki, MATSUZAKI Kenichiro, SOWA Nobuyuki, AMANO Yuki. Vibration Control of an Overhead Crane by Elimination of the Natural Frequency Component: (Application to double pendulum type system). The Proceedings of the Dynamics & Design Conference. 2018. 2018. 121
  • AMANO Yuki, KONDOU Takahiro, MORI Hiroki, MATSUZAKI Kenichiro, SOWA Nobuyuki. Vibration Control of an Overhead Crane by Elimination of the Natural Frequency Component: (Design of Controller for Obstacle Avoidance). The Proceedings of the Dynamics & Design Conference. 2018. 2018. 122
more...
MISC (91):
  • IRINO Masayuki, MATSUZAKI Kenichiro, KONDOU Takahiro, SOWA Nobuyuki. B-08 Residual Vibration Suppression in Motion Control of Inverted Pendulum by Subspace Control Method. 2016. 2016. 69. 53-54
  • HIRAKAWA Yoichiro, KONDOU Takahiro, MATSUZAKI Kenichiro, SOWA Nobuyuki, MORI Hiroki. 128 Development of a High-Performance Method of Vibration Analysis for a Large-Scale Nonlinear System : Treatment of the Consistent Mass Model. Dynamics and Design Conference : D & D. 2015. 2015. "128-1"-"128-10"
  • TSUSAKI Yuta, KONDOU Takahiro, SOWA Nobuyuki, TAKESHITA Tomoaki, MORI Hiroki. 171 Pattern Fomation Phenomena in Contact Rotating System : Stability Analysis of System with Multiple Time Delays. Dynamics and Design Conference : D & D. 2015. 2015. "171-1"-"171-11"
  • MIZOTA Toru, KONDOU Takahiro, MATSUZAKI Kenichiro, SOWA Nobuyuki, MORI Hiroki. 139 Vibration Control of Overhead Traveling Crane by the Eliminating Method of the Component of Natural Frequency : Treatment for In-Plane Motion of Trolley and Hoisting of Load. Dynamics and Design Conference : D & D. 2015. 2015. "139-1"-"139-11"
  • TAKESHITA Tomoaki, KONDOU Takahiro, KAWANO Tomohiro, SOWA Nobuyuki. 313 Pattern Formation Phenomena in Contact Rotating Systems : Stability Analysis Based on Complex Modal Analysis. Dynamics and Design Conference : D & D. 2014. 2014. "313-1"-"313-12"
more...
Education (4):
  • - 1993 Kyushu University
  • - 1993 Kyushu University Graduate School, Division of Engineering
  • - 1991 Kyushu University School of Engineering
  • - 1991 Kyushu University Faculty of Engineering
Professional career (1):
  • master(engineering) (Kyushu University)
Association Membership(s) (1):
日本機械学会
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