Litcius/Paper detail

A Comparative Numerical Study of the Symmetry Chaotic Jerk System with a Hyperbolic Sine Function via Two Different Methods

Abdulrahman B. M. Alzahrani, Mohamed A. Abdoon, Mohamed Elbadri, Mohammed Berir, Diaa Eldin Elgezouli

2023Symmetry20 citationsDOIOpen Access PDF

Abstract

This study aims to find a solution to the symmetry chaotic jerk system by using a new ABC-FD scheme and the NILM method. The findings of the supplied methods have been compared to Runge–Kutta’s fourth order (RK4). It was discovered that the suggested techniques gave results comparable to the RK4 method. Our primary goal is to develop effective methods for addressing symmetrical, chaotic systems. Using ABC-FD and NILM presents innovative approaches for comprehending and effectively handling intricate dynamics. The findings of this study have significant significance for addressing the occurrence of chaotic behavior in diverse scientific and engineering contexts. This research significantly contributes to fractional calculus and its various applications. The application of ABC-FD, which can identify chaotic behavior, makes our work stand out. This novel approach contributes to advancing research in nonlinear dynamics and fractional calculus. The present study not only offers a resolution to the problem of symmetric chaotic jerk systems but also presents a framework that may be applied to tackle analogous challenges in several domains. The techniques outlined in this paper facilitate the development and computational analysis of prospective fractional models, thereby contributing to the progress of scientific and engineering disciplines.

Topics & Concepts

JerkChaoticComputer scienceSineHyperbolic functionFunction (biology)Nonlinear systemSymmetry (geometry)Applied mathematicsCalculus (dental)MathematicsArtificial intelligenceMathematical analysisAccelerationPhysicsClassical mechanicsGeometryDentistryBiologyEvolutionary biologyQuantum mechanicsMedicineFractional Differential Equations SolutionsChaos control and synchronizationAdvanced Mathematical Theories and Applications