This study presents a novel control approach for stabilizing the chaotic behavior of the threedimensionalfractional-order Lorenz-84 atmosphere model. By leveraging the Grünwald–Letnikov discretization method, the fractional dynamics of the system are accurately modeled. A fractional-order proportional–integral–derivative (FOPID) controller is designed, with its parameters optimally tuned using Particle Swarm Optimization (PSO). The controller adapts the input signals based on real-time state-space feedback, enabling efficient suppression of chaotic oscillations. Numerical simulations demonstrate theeffectiveness of the PSO-tuned FOPID controller in achieving precise trajectory tracking and robust stabilization. The proposed method offers a promising solution for controlling fractional-order chaotic systems in atmospheric and other nonlinear contexts.
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Mellah et al. (Tue,) studied this question.
synapsesocial.com/papers/68dd9537fe798ba2fc499605 — DOI: https://doi.org/10.51485/ajss.v10i3.278
Nasr-Eddine Mellah
National Polytechnic School
Samir Ladaci
Polytechnic School of Algiers
Algerian Journal of Signals and Systems
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