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Robust backstepping control for maneuver aircraft based on event-triggered mechanism and nonlinear disturbance observer

Yaohua Shen (College of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, China)
Mou Chen (College of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, China)

Aircraft Engineering and Aerospace Technology

ISSN: 0002-2667

Article publication date: 1 March 2023

Issue publication date: 1 June 2023

260

Abstract

Purpose

This study aims to achieve the post-stall pitching maneuver (PSPM) and decrease the deflection frequency of aircraft actuators controlled by the robust backstepping method based on event-triggered mechanism (ETM), nonlinear disturbance observer (NDO) and dynamic surface control (DSC) techniques.

Design/methodology/approach

To estimate unsteady aerodynamic disturbances (UADs) to suppress their adverse effects, the NDO is designed. To avoid taking the derivative of the virtual control law directly and eliminate the coupling term of the system states and dynamic surface errors in the stability analysis, an improved DSC is developed. Combined with the NDO and DSC techniques, a robust backstepping method is proposed to achieve the PSPM. Furthermore, to decrease the deflection frequency of the aircraft actuators, a state-dependent ETM is introduced.

Findings

An ETM-and-NDO-based backstepping method with an improved DSC technique is developed to achieve the PSPM and decrease the deflection frequency of aircraft actuators. And simulation results are presented to verify the effectiveness of the proposed paper.

Originality/value

Few studies have been conducted on the control of the PSPM in which the lateral and longitudinal attitude dynamics are coupled with each other considering the UADs. Moreover, the mechanism that can decrease the deflection frequency of aircraft actuators is rarely developed in existing research. This study proposes an ETM-and-NDO-based backstepping scheme to address these problems with satisfactory performance of the PSPM.

Keywords

Acknowledgements

This work was supported in part by the National Science Fund for Distinguished Young Scholars under Grant 61825302; in part by the National Natural Science Foundation of China under Grant U2013201; and in part by the Postgraduate Research and Practice Innovation Program of Jiangsu Province under Grant KYCX21_0223.

Citation

Shen, Y. and Chen, M. (2023), "Robust backstepping control for maneuver aircraft based on event-triggered mechanism and nonlinear disturbance observer", Aircraft Engineering and Aerospace Technology, Vol. 95 No. 7, pp. 1016-1028. https://doi.org/10.1108/AEAT-09-2022-0250

Publisher

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Emerald Publishing Limited

Copyright © 2023, Emerald Publishing Limited

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