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Główni autorzy: Seuret, Alexandre, Vazquez, Rafael, Zaccarian, Luca
Format: Preprint
Wydane: 2024
Hasła przedmiotowe:
Dostęp online:https://arxiv.org/abs/2403.03633
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author Seuret, Alexandre
Vazquez, Rafael
Zaccarian, Luca
author_facet Seuret, Alexandre
Vazquez, Rafael
Zaccarian, Luca
contents This paper introduces a hybrid dynamical system methodology for managing impulsive control in spacecraft rendezvous and proximity operations under the Hill-Clohessy-Wiltshire model. We address the control design problem by isolating the out-of-plane from the in-plane dynamics and present a feedback control law for each of them. This law is based on a Lyapunov function tailored to each of the dynamics, capable of addressing thruster saturation and also a minimum impulse bit. These Lyapunov functions were found by reformulating the system's dynamics into coordinates that more intuitively represent their physical behavior. The effectiveness of our control laws is then shown through numerical simulation. This is an extended version of an ECC24 article of the same name, which includes the proofs omitted for lack of space.
format Preprint
id arxiv_https___arxiv_org_abs_2403_03633
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A hybrid dynamical system approach to the impulsive control of spacecraft rendezvous (extended version)
Seuret, Alexandre
Vazquez, Rafael
Zaccarian, Luca
Systems and Control
Optimization and Control
This paper introduces a hybrid dynamical system methodology for managing impulsive control in spacecraft rendezvous and proximity operations under the Hill-Clohessy-Wiltshire model. We address the control design problem by isolating the out-of-plane from the in-plane dynamics and present a feedback control law for each of them. This law is based on a Lyapunov function tailored to each of the dynamics, capable of addressing thruster saturation and also a minimum impulse bit. These Lyapunov functions were found by reformulating the system's dynamics into coordinates that more intuitively represent their physical behavior. The effectiveness of our control laws is then shown through numerical simulation. This is an extended version of an ECC24 article of the same name, which includes the proofs omitted for lack of space.
title A hybrid dynamical system approach to the impulsive control of spacecraft rendezvous (extended version)
topic Systems and Control
Optimization and Control
url https://arxiv.org/abs/2403.03633