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Research Article | Open Access

Asymmetric integral barrier function-based tracking control of constrained robots

Tan ZhangPianpian Yan( )
School of Electrical and Optoelectronic Engineering, West Anhui University, Lu'an 237012, China
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Abstract

In this paper, a new-type time-varying asymmetric integral barrier function is designed to handle the state constraint of nonlinear systems. The barrier Lyapunov function is developed by building an integral upper limit function with respect to transformation errors over an open set to cope with the position constraint of the robotic system. We know that the symmetric time-invariant constraint is only a particular situation of the asymmetric time-variant constraint, and thus compared to existing methods, it is capable of handling more general and broad practical engineering issues. We show that under the integral barrier Lyapunov function combining a disturbance observer-based tracking controller, the position vector tracks a desired trajectory successfully, while the constraint boundary is never violated. It can certify the exponential asymptotic stability of the robotic tracking system by using the given inequality relationship on barrier function and Lyapunov analysis. Finally, the feasibility of the presented algorithm is indicated by completing the simulations.

CLC number: 90C26, 90C30

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AIMS Mathematics
Pages 319-339

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Cite this article:
Zhang T, Yan P. Asymmetric integral barrier function-based tracking control of constrained robots. AIMS Mathematics, 2024, 9(1): 319-339. https://doi.org/10.3934/math.2024019

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Received: 02 September 2023
Revised: 22 November 2023
Accepted: 23 November 2023
Published: 15 January 2024
©2024 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)