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Shape Servoing of Deformable Objects Using Model Estimation and Barrier Lyapunov FunctionAn adaptive shape servoing control method is presented in this article to manipulate a deformable object into a desired shape in 3-D. A finite-point-based representation of the deformable object is used and the deformation Jacobian matrix is approximated using Fourier series basis functions. The unknown parameters of the deformation Jacobian are learned by using the velocity applied to a control point on the object and corresponding change of positions of the points describing the entire object. An integral concurrent learning (ICL)-based parameter update law is designed along with a constrained controller to satisfy the state constraints on the motion of the control point using Barrier Lyapunov function analysis. ICL-based parameter update law uses data history of velocity and corresponding positions of the points along with their current values. An efficient algorithm to update the history stack using singular value maximization is proposed based on the structure of the regressor matrix. Simulations using a physical simulator and experiments using a robot platform are performed to validate the performance of the proposed controller on two different deformable objects.
Document ID
20250001914
Acquisition Source
2230 Support
Document Type
Accepted Manuscript (Version with final changes)
Authors
Vrithik Raj Guthikonda ORCID
(University of Connecticut Groton, United States)
Ashwin P Dani ORCID
(University of Connecticut Storrs, Connecticut, United States)
Date Acquired
February 20, 2025
Publication Date
April 18, 2024
Publication Information
Publication: IEEE/ASME Transactions on Mechatronics
Publisher: Institute of Electrical and Electronics Engineers
Volume: 29
Issue: 6
Issue Publication Date: December 1, 2024
ISSN: 1083-4435
e-ISSN: 1941-014X
Subject Category
Electronics and Electrical Engineering
Mechanical Engineering
Funding Number(s)
CONTRACT_GRANT: SMA-2134367
CONTRACT_GRANT: 80NSSC19K1076
Distribution Limits
Public
Copyright
Use by or on behalf of the US Gov. Permitted.
Technical Review
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