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Research Article | Open Access

On Finite-Time Anti-Saturated Proximity Control with a Tumbling Non-Cooperative Space Target

Caisheng Wei1Yang Li1Zeyang Yin1( )Liang Zhou2Jinglang Feng3
School of Automation, Central South University, Changsha, China
Intelligent Science & Technology Academy Limited of CASIC, Beijing, China
Department of Mechanical and Aerospace Engineering, University of Strathclyde, Glasgow, UK
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Abstract

For the challenging problem that a spacecraft approaches a tumbling target with non-cooperative maneuver, an anti-saturated proximity control method is proposed in this paper. First, a brand-new appointed-time convergent performance function is developed via exploring Bézier curve to quantitatively characterize the transient and steady-state behaviors of the pose tracking error system. The major advantage of the proposed function is that the actuator saturation phenomenon at the beginning can be effectively reduced. Then, an anti-saturated pose tracking controller is devised along with an adaptive saturation compensator. Wherein, the finite-time stability of both the pose and its velocity error signals are guaranteed simultaneously in the presence of actuator saturation. Finally, 2 groups of illustrative examples are organized and verify that the close-range proximity is effectively realized even with unknown target maneuver.

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Space: Science & Technology
Article number: 0045

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Cite this article:
Wei C, Li Y, Yin Z, et al. On Finite-Time Anti-Saturated Proximity Control with a Tumbling Non-Cooperative Space Target. Space: Science & Technology, 2023, 3: 0045. https://doi.org/10.34133/space.0045

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Received: 13 March 2023
Accepted: 30 May 2023
Published: 31 July 2023
© 2023 Caisheng Wei et al. Exclusive licensee Beijing Institute of Technology Press. No claim to original U.S. Government Works.

Distributed under a Creative Commons Attribution License 4.0 (CC BY 4.0).