Magnetic Gear-Based Actuator: A Framework of Design, Optimization, and Disturbance Observer-Based Torque Control

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12
Citations

SCOPUS

13

초록

This letter presents a design framework and novel control strategy for a compact coaxial magnetic-gear-based actuation module suitable for small-to-mid-sized mechanical and robotic applications. The proposed actuation module adopts a non-contact magnetic coupling mechanism to transmit rotational power with a predetermined gear ratio, in contrast to traditional mechanical gear-based transmissions. This approach offers several advantages such as enhanced backdrivability, hardware safety, and transparency when compared to conventional contact-based transmissions. Furthermore, the magnetic coupling effect provides a spring-like characteristic that can be utilized to implement a series elastic actuation enabling sensorless torque control. The design of the magnetic gear was optimized using a differential evolution method, and a dynamic model was formulated to specify its dynamic characteristics. Finally, a composite disturbance observer-based torque control algorithm was developed, which capitalizes on the features of the magnetic spring. The proposed control algorithm was validated through several experiments.

키워드

Actuation and joint mechanisms; compliant joints and mechanisms; force control; mechanism design
제목
Magnetic Gear-Based Actuator: A Framework of Design, Optimization, and Disturbance Observer-Based Torque Control
저자
Song, Hangyeol; Lee, Edgar; Seo, Hyung-Tae; Jeong, Seokhwan
DOI
10.1109/LRA.2023.3313011
발행일
2023-11
유형
Article
저널명
IEEE Robotics and Automation Letters
권
8
호
11
페이지
7050 ~ 7057