Enhancing the Pitch-Rate Control Performance of an F-16 Aircraft Using Fractional-Order Direct-MRAC Adaptive Control

Ceballos, Gustavo; Duarte, Manuel; Orchad, Marcos; Ehijo, Alfonso

Keywords: fractional-order adaptive pitch-rate control, smoother control output signal, particle swarm optimization algorithm (PSO)

Abstract

This study presents a comparative analysis of classical model reference adaptive control (IO-DMRAC) and its fractional-order counterpart (FO-DMRAC), which are applied to the pitch-rate control of an F-16 aircraft longitudinal model. The research demonstrates a significant enhancement in control performance with fractional-order adaptive control. Notably, the FO-DMRAC achieves lower performance indices such as the Integral Square-Error criterion (ISE) and Integral Square-Input criterion (ISU) and eliminates system output oscillations during transient periods. This study marks the pioneering application of FO-DMRAC in aircraft pitch-rate control within the literature. Through simulations on an F-16 short-period model with a relative degree of 1, the FO-DMRAC design is assessed under specific flight conditions and compared with its IO-DMRAC counterpart. Furthermore, the study ensures the boundedness of all signals, including internal ones such as ω(t).

Más información

Título de la Revista: MDPI Fractal and Fractional
Volumen: 8
Editorial: MDPI AG
Fecha de publicación: 2024
Página de inicio: 338
Idioma: Inglés
Financiamiento/Sponsor: 1. CONICYT-Chile; 2.Advanced Center for Electrical and Electronic Engineering, AC3E; 3. Universidad Central de Chile; 4. Universidad de O’Higgins
URL: https://www.mdpi.com/2504-3110/8/6/338
DOI:

https://doi.org/10.3390/fractalfract8060338

Notas: Scopus, SCIE