M. en C. José Luis Flores Garcilazo

A New Hyperjerk System with a Half Line Equilibrium: Multistability, Period Doubling Reversals, Antimonotonocity, Electronic Circuit, FPGA Design and an Application to Image Encryption

A hyperjerk system pertains to a dynamical system regulated by an ordinary differential equation of n th order, where n≥4 . The main contribution of this work is the finding of a new autonomous hyperjerk system with a half line equilibrium. The mathematical framework of the proposed hyperjerk system contains eight terms with an absolute function nonlinearity. The essential dynamic characteristics of the model are explored, encompassing analysis of equilibrium points and their stability, depiction of the phase trajectories, illustration of bifurcation patterns, and visualization of Lyapunov exponent graphs. Our finding shows that the new 4D hyperjerk system exhibits special behavior like multistability, period doubling reversals and antimonotonocity. The proposed hyperjerk system has been implemented with an electronic circuit using MultiSim 14.0. Moreover, the FPGA implementation of the proposed hyperjerk system is performed by applying two numerical methods: Forward Euler and Trapezoidal. Experimental attractors are given from an oscilloscope by using the Zybo Z7-20 FPGA development board, which are in good agreement with the MATLAB and MultiSim 14.0 simulations. Finally, based on the chaotic dynamical behavior of the proposed chaotic hyperjerk system, a new image encryption approach is proposed. The experimental outcomes of the presented encryption algorithm prove its efficiency and security.

INDEX TERMS
Chaotic Systems, HyperJerk Systems, Multistability, Electronic Circuit, FPGA, Design, Encryption.

Autores:

Brisbane Ovilla Martínez.

Revista

IEEE Access.

DOI: 10.1109/ACCESS.2024.3351693

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Desde marzo de 2003, el Departamento de Farmacobiología imparte los programas de Maestría y Doctorado en Neurofarmacología y Terapéutica Experimental. Nuestras alumnas y alumnos reciben una formación académica de calidad mediante cursos teórico/prácticos especializados y entrenamiento personalizado en su formación como futuras y futuros investigadores.

Investigación

El Departamento de Farmacobiología estudia los efectos de los fármacos para entender procesos que subyacen a enfermedades y condiciones relevantes y su posible terapia.

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07/11/2023 04:31:18 p. m.