A Novel Hybrid Robust Control Design Method for F-16 Aircraft Longitudinal Dynamics

Author:

Nguyen Vi H.1,Tran Thanh T.1ORCID

Affiliation:

1. Faculty of Engineering, Vietnamese-German University, Le Lai, Thu Dau Mot, Binh Duong, Vietnam

Abstract

This paper presents a hybrid robust control design method for a third-order lower-triangular model of nonlinear dynamic systems in the presence of disturbance. In this paper, a novel control design is presented systematically to synthesize a robust nonlinear feedback controller, called backstepping sliding mode control (BSMC), for the proposed system by a combined approach of backstepping design and sliding mode control. In this approach, a family of the “sliding surface” is introduced in state transformations. Then, a smooth switching function of the sliding surface is introduced and enforced to include in virtual feedbacks and a real control law from the control selection phrases of the backstepping design loop. The achieved control method proves a well-tracking command with asymptotic stability, provides a robustness in the presence of uncertainties, and eliminates completely a chattering phenomenon. The application of flight-path angle control corresponding to the longitudinal dynamics of a high-performance F-16 aircraft simulation model is implemented. Under some assumptions, full nonlinear longitudinal dynamics is reformed into a lower-triangular system for a direct application to formulate a control law. A closed-loop system is achieved for in-flight simulation with different flight profiles for a comparison of the existing methods. Also, an external disturbance on different loading/unloading conditions in flight is applied to verify and validate robustness of the proposed control method.

Funder

Vietnamese-German University

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Design of a Novel Switching Controller for an Industrial Crane System;2023 International Symposium on Electrical and Electronics Engineering (ISEE);2023-10-19

2. Nonlinear Control of Aircraft Flight Dynamics Using Integrator-Backstepping Design Method;Journal of Aerospace Engineering;2022-03

3. A Novel Design of Chattering-free Sliding Mode Control for a Nonlinear Dynamic System;2021 4th International Conference on Robotics, Control and Automation Engineering (RCAE);2021-11-04

4. SDRE and LQR Controls Comparison Applied in High-Performance Aircraft in a Longitudinal Flight;International Journal of Robotics and Control Systems;2021-05-26

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