Vibration Suppression of Cantilever Using Piezoelectric Actuator Through Optimal Design for Actuator Position and Control Parameters
Vibration Suppression of Cantilever Using Piezoelectric Actuator Through Optimal Design for Actuator Position and Control Parameters
カテゴリ: 論文誌(論文単位)
グループ名: 【D】産業応用部門(英文)
発行日: 2024/11/01
タイトル(英語): Vibration Suppression of Cantilever Using Piezoelectric Actuator Through Optimal Design for Actuator Position and Control Parameters
著者名: Yuya Watanabe (Department of Engineering, Nagoya Institute of Technology), Kenta Seki (Department of Engineering, Nagoya Institute of Technology), Makoto Iwasaki (Department of Engineering, Nagoya Institute of Technology)
著者名(英語): Yuya Watanabe (Department of Engineering, Nagoya Institute of Technology), Kenta Seki (Department of Engineering, Nagoya Institute of Technology), Makoto Iwasaki (Department of Engineering, Nagoya Institute of Technology)
キーワード: vibration suppression,piezoelectric actuator,optimal design,particle swarm optimization,cantilever
要約(英語): Vibration suppression is an extremely important aspect in mechatronic equipment, and the placement of actuators/sensors and control system design greatly impacts vibration control performance. In this study, a simultaneous optimal design system for the actuator position and control system is constructed. As a preliminary study, the vibration suppression problem of a flexible cantilever using a piezoelectric element as an actuator is addressed. The simultaneous optimal design system reproduces the motion behavior of the mechanism, including the control system, by simulation using multi-body dynamics software, and searches for the optimal actuator position and compensator parameters in combination with optimization algorithms. The multi-body dynamics software calculates the vibration response based on the elastic deformation of the cantilever and reproduces the force generated by the piezoelectric actuator on the analytical model. The validity of the constructed system is verified through simulations and experiments.
本誌: IEEJ Journal of Industry Applications Vol.13 No.6 (2024)
本誌掲載ページ: 723-730 p
原稿種別: 論文/英語
電子版へのリンク: https://www.jstage.jst.go.jp/article/ieejjia/13/6/13_24004176/_article/-char/ja/
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