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  4. SpringExo, a spring-based exoskeleton for providing knee assistance: Design, Characterization and Feasibility Study
 
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SpringExo, a spring-based exoskeleton for providing knee assistance: Design, Characterization and Feasibility Study

Journal
Proceedings - IEEE International Conference on Robotics and Automation
Journal Volume
2021-May
Pages
10513-10519
ISBN
9.78173E+12
Date Issued
2021
Author(s)
Sui D.; Chang B.-C.; Hidayah R.; Zhu Y.; Agrawal S.K.
BIING-CHWEN CHANG  
DOI
10.1109/ICRA48506.2021.9560775
DOI
PIIAE
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/614637
Abstract
This paper presents the design and preliminary evaluation of a portable spring-based knee exoskeleton, the SpringExo, which is designed to provide assistance to the leg while minimizing interference with the natural leg movement. Traditional rigid exoskeletons are unable to accurately align with a user's anatomical joints. In addition, the user's natural motion pattern is likely to change due to the constraints of the rigid exoskeleton. Though some textile-based soft exosuits and cable-driven soft exoskeletons have been developed to achieve better alignment with human's biological joints, forces applied by the cables have to be sustained by human skeleton and joints. SpringExo, in comparison, uses a coil spring which the user wears around the thigh and shank, and does not require alignment with the joints. The spring stores energy and provides minimal interference during elastic deformation. A key feature of the SpringExo is that the springs store energy during the flexion phase and release this energy to assist the knee extension in the extension phase. We conducted human subjects study to verify its biomechanical and physiological effects on the user during stair ascent. Results from a six-subject study showed that the device did not interfere with the natural joint angles and assisted knee extension during stair ascent. However, further redesign and optimization are needed on the actuation system to offset SpringExo's drawback of hindering knee flexion. © 2021 IEEE
SDGs

[SDGs]SDG7

Publisher
Institute of Electrical and Electronics Engineers Inc.
Type
conference paper

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