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The Analysis of Fractional-Order System Delay Differential Equations Using a Numerical Method

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  • Pongsakorn Sunthrayuth
  • Hina M. Dutt
  • Fazal Ghani
  • Mohammad Asif Arefin
  • Fathalla A. Rihan

Abstract

To solve fractional delay differential equation systems, the Laguerre Wavelets Method (LWM) is presented and coupled with the steps method in this article. Caputo fractional derivative is used in the proposed technique. The results show that the current procedure is accurate and reliable. Different nonlinear systems have been solved, and the results have been compared to the exact solution and different methods. Furthermore, it is clear from the figures that the LWM error converges quickly when compared to other approaches. When compared with the exact solution to other approaches, it is clear that LWM is more accurate and gets closer to the exact solution faster. Moreover, on the basis of the novelty and scientific importance, the present method can be extended to solve other nonlinear fractional-order delay differential equations.

Suggested Citation

  • Pongsakorn Sunthrayuth & Hina M. Dutt & Fazal Ghani & Mohammad Asif Arefin & Fathalla A. Rihan, 2022. "The Analysis of Fractional-Order System Delay Differential Equations Using a Numerical Method," Complexity, Hindawi, vol. 2022, pages 1-9, May.
  • Handle: RePEc:hin:complx:3570667
    DOI: 10.1155/2022/3570667
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