DE LEON MORALES, JESUS

DE LEON MORALES, JESUS

INGENIERÍA · Nivel 2

Desde 1993 es profesor/investigador en Universidad Autónoma de Nuevo León

Jesus de Leon received the Ph.D. degree in Automatic Control from Claude Bernard Lyon 1 University in 1992. Since 1993, he is a Professor of Electrical Engineering at Universidad Autonoma de Nuevo Leon, Mexico. He is currently working on applications...

Jesus de Leon received the Ph.D. degree in Automatic Control
from Claude Bernard Lyon 1 University in 1992. Since
1993, he is a Professor of Electrical Engineering at Universidad
Autonoma de Nuevo Leon, Mexico. He is currently
working on applications of control theory, electrical machines,
nonlinear observers, electric vehicles, renewable energies and power systems

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Información*

Nombre JESUS DE LEON MORALES
Área INGENIERÍAS Y DESARROLLO TECNOLÓGICO
Campo INGENIERÍA
Disciplina INGENIERÍA ELECTRÓNICA
Especialidad INGENIERIA ELECTRICA
CVU 13534
Institución
Dependencia NO APLICA
Entidad NO APLICA
Nivel 2
Vigencia Inicio: 01/01/2025
Fin: 31/12/2044
Categoría: EXTENSION 15 AÑOS

* Información del primer trimestre de 2026.
Fuente: SECIHTI.

Publicaciones ORCID

2023
Adaptive sensorless control for interior permanent magnet synchronous motor based on sliding mode approach ISA Transactions
Leader-Follower Formation Control of Mobile Robots Based on Simplified Super-Twisting Algorithm
Novel adaptive law for super-twisting controller: USV tracking control under disturbances ISA Transactions
2022
A simplified version of adaptive super twisting—Application to the control of floating wind turbine Control Engineering Practice
Angular position estimation error extraction for speed and angular position estimation of IPMSM using a parameter-free adaptive observer Journal of the Franklin Institute
Application of a sensorless control based on sliding mode in permanent magnet synchronous machine using an angular error extraction Proceedings of IEEE International Workshop on Variable Structure Systems
Sensorless control of an interior permanent magnet synchronous motor based on an adaptive sliding mode observer using position error extraction method 2022 IEEE Conference on Control Technology and Applications, CCTA 2022
Sensorless control scheme based on sliding modes for interior permanent magnet synchronous motor Proceedings of the Institution of Mechanical Engineers. Part I: Journal of Systems and Control Engineering
2021
A novel approach to extract the angular position estimation error for position and speed estimation of Interior Permanent Magnet Synchronous Machine IECON Proceedings (Industrial Electronics Conference)
Advanced control design based on sliding modes technique for power extraction maximization in variable speed wind turbine Renewable Energy Systems: Modelling, Optimization and Control