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Dynamical analysis of the nonlinear complex fractional emerging telecommunication model with higher–order dispersive cubic–quintic

Authors :
Abdel-Haleem Abdel-Aty
Mostafa M. A. Khater
Choonkil Park
Raghda A. M. Attia
A. M. Zidan
Hadi Rezazadeh
Abdel-Baset A. Mohamed
Source :
Alexandria Engineering Journal, Vol 59, Iss 3, Pp 1425-1433 (2020)
Publication Year :
2020
Publisher :
Elsevier BV, 2020.

Abstract

In this paper, a nonlinear fractional emerging telecommunication model with higher–order dispersive cubic–quintic is studied by using two recent computational schemes. This kind of model is arising in many applications such as machine learning and deep learning, cloud computing, data science, dense sensor network, artificial intelligence convergence, integration of Internet of Things, self–service IT for business users, self-powered data centers, and dense sensor networks (DSNs) that is used in the turbine blades monitoring and health monitoring. Two practical algorithms (modified Khater method and sech–tanh functions method) are applied to higher–order dispersive cubic–quintic nonlinear complex fractional Schrodinger ( NLCFS ) equation. Many novel traveling wave solutions are constructed that do not exist earlier. These solutions are considered as the icon key in the emerging telecommunication field, were they able to explain the physical nature of the waves spread, especially in the dispersive medium. For more illustration, some attractive sketches are also depicted for the interpretation physically of the achieved solutions.

Details

ISSN :
11100168
Volume :
59
Database :
OpenAIRE
Journal :
Alexandria Engineering Journal
Accession number :
edsair.doi.dedup.....77e9f5dda58318d1bf45afc489dd557a
Full Text :
https://doi.org/10.1016/j.aej.2020.03.046