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Disturbance Rejection Improvement in Robust Motion Control of Series Elastic Actuator

研究成果: Conference contribution

抄録

Contact safety and high control performance are important for human assistive collaborative robots and wearable technology. A series elastic actuator (SEA) has a spring inserted between the motor and the load, which has high compliance. A motor/load-side encoder that acquires motor and load angles enables precise control. SEA with a motor/load-side encoder is appropriate for a human assistive system. However, resonant poles due to the low stiffness of SEA cause resonant vibration and low robustness. Human assistive systems need to achieve control that is precise and robust to disturbances from humans and the environment. This paper proposes a novel control system design that achieves vibration suppression and high robustness. The proposed method consists of torsion torque control and an inverse system filter. By dividing the suppression of resonant pole effects and improving robustness into different controllers, the proposed method makes it easier to design appropriate gains for human assistive systems than conventional methods. The validity of the proposed method and the effect of stiffness error were verified by simulations of position and force control.

本文言語English
ホスト出版物のタイトル2024 10th IEEE RAS/EMBS International Conference for Biomedical Robotics and Biomechatronics, BioRob 2024
出版社IEEE Computer Society
ページ1599-1604
ページ数6
ISBN(電子版)9798350386523
DOI
出版ステータスPublished - 2024
イベント10th IEEE RAS/EMBS International Conference for Biomedical Robotics and Biomechatronics, BioRob 2024 - Heidelberg, Germany
継続期間: 2024 9月 12024 9月 4

出版物シリーズ

名前Proceedings of the IEEE RAS and EMBS International Conference on Biomedical Robotics and Biomechatronics
ISSN(印刷版)2155-1774

Conference

Conference10th IEEE RAS/EMBS International Conference for Biomedical Robotics and Biomechatronics, BioRob 2024
国/地域Germany
CityHeidelberg
Period24/9/124/9/4

ASJC Scopus subject areas

  • 人工知能
  • 生体医工学
  • 機械工学

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