This study explores the application of fractional calculus in enhancing the dynamics of differential system models, focusing on the time-fractional version of the Degn-Harrison model. By employing a linear controller, global synchronization of the model is achieved, showcasing the efficacy of fractional calculus in control theory. The findings are validated through numerical simulations, providing empirical evidence for the proposed approach’s effectiveness in understanding and manipulating complex dynamical systems.

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Linear Control Law for Fractional-Order Degn-Harrison System Synchronization

  • Naziha Belmahi,
  • Fatiha Mesdoui

摘要

This study explores the application of fractional calculus in enhancing the dynamics of differential system models, focusing on the time-fractional version of the Degn-Harrison model. By employing a linear controller, global synchronization of the model is achieved, showcasing the efficacy of fractional calculus in control theory. The findings are validated through numerical simulations, providing empirical evidence for the proposed approach’s effectiveness in understanding and manipulating complex dynamical systems.