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).
| Original language | English |
|---|---|
| Article number | 338 |
| Journal | Fractal and Fractional |
| Volume | 8 |
| Issue number | 6 |
| DOIs | |
| State | Published - Jun 2024 |
Keywords
- fractional-order adaptive pitch-rate control
- particle swarm optimization algorithm (PSO)
- smoother control output signal
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