CAMPOS CANTON, ERIC
FÍSICA · Nivel 3
Desde 2010 es Research en Instituto Potosino de Investigación Científica y Tecnológica
Dr. Eric Campos received his B.S. degree in Electronic in 1997 from the Science Faculty, Universidad Autonoma de San Luis Potosí (UASLP), the M. Eng. degree in Electrical Engineering, Minor at Automatic Control in 1999 from Engineering Faculty, UASLP and...
Dr. Eric Campos received his B.S. degree in Electronic in 1997 from the Science Faculty, Universidad Autonoma de San Luis Potosí (UASLP), the M. Eng. degree in Electrical Engineering, Minor at Automatic Control in 1999 from Engineering Faculty, UASLP and Ph. D. degree in Applied Science in 2003 from Instituto de Investigación en Comunicación Óptica, UASLP.
His current research interest is in the nonlinear behavior and complex networks, chaos computing, electronic implementation of flexible structures applied to logic gates, multiscroll chaotic attractors, multistable structures, chaotic synchronization phenomena, generation of chaos by switched systems, hyperchaotic systems and cryptography based on chaotic maps .
| Nombre | ERIC CAMPOS CANTON |
|---|---|
| Área | FÍSICO-MATEMÁTICAS Y CIENCIAS DE LA TIERRA |
| Campo | FÍSICA |
| Disciplina | ANÁLISIS Y ANÁLISIS FUNCIONAL |
| Especialidad | OTRAS |
| CVU | 121080 |
| Institución | |
|---|---|
| Dependencia | DIVISION DE CONTROL Y SISTEMAS DINAMICOS |
| Entidad | SAN LUIS POTOSI |
| Nivel | 3 |
| Vigencia | Inicio: 01/01/2025 |
| Fin: 31/12/2029 |
Publicaciones ORCID
- 2025
- Orbits of families of discrete dynamical systems evolving in the natural numbers Chaos: An Interdisciplinary Journal of Nonlinear Science
- 2024
- Coexistence of stable states in a parametric family of bimodal maps Chaos, Solitons & Fractals
- Alternative method to reveal encoded images via Gaussian distribution functions Integration
- Coexistence of Hidden Attractor and Self-Excited Attractors on the Plane
- 2023
- Bidimensional Deterministic Model for Diffusion and Settling of Particles Axioms
- FPGA Implementation of a Chaotic Map with No Fixed Point Electronics
- 2022
- Generation of Multistability through Unstable Systems Chaos Theory and Applications
- Deterministic Brownian-like Motion: Electronic Approach Electronics
- Dynamics of Multimodal Families of m‐Modal Maps Complexity
- Assessment of Distance Learning/Teaching Techniques in Engineering EPE 2022 - Proceedings of the 2022 12th International Conference and Exposition on Electrical and Power Engineering
