Cosserat rod modeling and validation for a soft continuum robot with self-controllable variable curvature
Author(s)
Wang, Xinran
Rojas, Nicolas
Type
Conference Paper
Abstract
This paper introduces a Cosserat rod based math-
ematical model for modeling a self-controllable variable curvature soft continuum robot. This soft continuum robot has a hollow inner channel and was developed with the ability to perform variable curvature utilizing a growing spine. The growing spine is able to grow and retract while modifies its stiffness through milli-size particle (glass bubble) granular jamming. This soft continuum robot can then perform continuous curvature variation, unlike previous approaches whose curvature variation is discrete and depends on the number of locking mechanisms or manual configurations. The robot poses an emergent modeling problem due to the variable stiffness growing spine which is addressed in this paper. We investigate the property of growing spine stiffness and incorporate it into the Cosserat rod model by implementing a combined stiffness approach. We conduct experiments with the soft continuum robot in various configurations and compared the results with
our developed mathematical model. The results show that the mathematical model based on the adapted Cosserat rod matches the experimental results with only a 3.3% error with respect to the length of the soft continuum robot.
ematical model for modeling a self-controllable variable curvature soft continuum robot. This soft continuum robot has a hollow inner channel and was developed with the ability to perform variable curvature utilizing a growing spine. The growing spine is able to grow and retract while modifies its stiffness through milli-size particle (glass bubble) granular jamming. This soft continuum robot can then perform continuous curvature variation, unlike previous approaches whose curvature variation is discrete and depends on the number of locking mechanisms or manual configurations. The robot poses an emergent modeling problem due to the variable stiffness growing spine which is addressed in this paper. We investigate the property of growing spine stiffness and incorporate it into the Cosserat rod model by implementing a combined stiffness approach. We conduct experiments with the soft continuum robot in various configurations and compared the results with
our developed mathematical model. The results show that the mathematical model based on the adapted Cosserat rod matches the experimental results with only a 3.3% error with respect to the length of the soft continuum robot.
Date Issued
2024-05-13
Date Acceptance
2024-01-18
Citation
2024 IEEE 7th International Conference on Soft Robotics (RoboSoft), 2024
ISBN
979-8-3503-8181-8
ISSN
2769-4534
Publisher
IEEE
Journal / Book Title
2024 IEEE 7th International Conference on Soft Robotics (RoboSoft)
Copyright Statement
Copyright © 2024 IEEE. This is the author’s accepted manuscript made available under a CC-BY licence in accordance with Imperial’s Research Publications Open Access policy (www.imperial.ac.uk/oa-policy)
License URL
Identifier
https://ieeexplore.ieee.org/abstract/document/10522028
Source
IEEE7th IEEE-RAS International Conference on Soft Robotics (ROBOSOFT 2024)
Publication Status
Published
Start Date
2024-04-14
Finish Date
2024-04-17
Coverage Spatial
San Diego, CA, USA
Date Publish Online
2024-05-13