PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2018

Nonlinear dynamics and SDRE control applied to a high-performance aircraft in a longitudinal flight considering atmospheric turbulence in flight

Authors

Pacheco dos Santos, Guilherme
Balthazar, José Manoel
Janzen, Frederic Conrad
Rocha, Rodrigo Tumolin
Tusset, Angelo Marcelo

Journal of Sound and Vibration , vol. 436 , pp. 273-285

ISSN: 0022460X

13
Citations
6
Authors

Abstract

© 2018 Elsevier LtdModern high-performance aircrafts operate in regular flight regimes, in which the nonlinearities of the system directly influence the dynamical response of the aircraft. This work studies the dynamics of a fighter aircraft operating at high angles of attack of the wing. A mathematical model was developed deriving a system of nonlinear dynamical differential equations representing the longitudinal flight of the aircraft, considering the effect of the variation of the wind speed due to the atmospheric turbulence in the dynamic response of the aircraft. The dynamics of the aircraft is modeled as a two-degrees-of-freedom system, and the variation of the wind gusts is considered as a single-degree-of-freedom system. The analysis of the behavior of the system is carried out through the 0–1 test method to determine if the system is chaotic or periodic, which is applied in relation to the speed and angle of attack of the aircraft. As an object of study, all the considerations and analyses regarding the F-8 aircraft “Crusader” were took into account. A control technique is proposed in a nonlinear way, at which the angle of tail deflection is considered as a control parameter and projected using the method of control of the State Dependent Riccati Equations (SDRE) in order to stabilize the wing angle oscillations, considering critical regions of the behavior of the aircraft. Numerical simulations demonstrated the efficiency of the SDRE control, taking into account the comparison of the dynamics of the system with and without control, by using phase planes and parametric uncertainties, where the controller showed to be able to respond quickly and reliably to recover the aircraft from a stall situation.

Keywords

Atmospheric turbulence High-performance aircraft Nonlinear control Nonlinear dynamic

Condensed Matter Physics (PHYS) Mechanics of Materials (ENGI) Acoustics and Ultrasonics (PHYS) Mechanical Engineering (ENGI)
: Scopus
Last Update: 2026-06-25
: 2-s2.0-85053031579
PII: S0022460X18305261