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Publishing Language: Chinese | Open Access

Dynamic sliding mode stabilization control for nonminimum phase hypersonic vehicle

Yuxiao WANG1Hang FENG1Yuyu ZHAO1( )Mingwei SUN2
College of Electronic Information and Automation, Civil Aviation University of China, Tianjin 300300, China
College of Artificial Intelligence, Nankai University, Tianjin 300350, China
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Abstract

Aiming at the zero dynamic instability caused by nonminimum phase property of hypersonic vehicles, a model transformation method based on the B-I (Byrnes-Isidori) standard form was proposed to achieve decoupling of internal and external dynamics of the system. A dynamic integral sliding mode stabilization control method was proposed, an augmented closed-loop system with internal dynamics, external dynamics and dynamic parameters was formed. A sliding mode parameter tuning method was proposed to make the augmented system remain dynamic stable under different operating conditions and perturbation conditions, and the trimmed point of external output was always zero. The proposed method could accurately track the output trajectory command with zero dynamic stability, and realize the longitudinal trajectory stability tracking control of nonminimum phase hypersonic vehicle. Lyapunov stability analysis was used to prove the stability of the proposed control method, and constant dynamic pressure trajectory tracking and Monte Carlo simulations were carried out. Simulation results show that the dynamic integral sliding mode control method maintains good tracking accuracy and robustness under perturbation conditions, and stabilizes the zero dynamics of the system effectively.

CLC number: TP273 Document code: A Article ID: 1001-2486(2024)05-054-11

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Journal of National University of Defense Technology
Pages 54-64

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Cite this article:
WANG Y, FENG H, ZHAO Y, et al. Dynamic sliding mode stabilization control for nonminimum phase hypersonic vehicle. Journal of National University of Defense Technology, 2024, 46(5): 54-64. https://doi.org/10.11887/j.cn.202405007

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Received: 07 December 2022
Published: 28 October 2024
© 2024 Journal of National University of Defense Technology

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).