SOLIS CERVANTES, CESAR ULISES
INGENIERÍA · Nivel 1
Robust control
Stochastic control
Game Theory and applications
Dynamical systems
Modeling and simulation systems
System identification
Extremum Seeking Control
Artificial Neural Networks
Desde 2021 es Professor in Control Theory en Instituto Politécnico Nacional
Ph. D. in Automatic Control Member of National Research System Level 1, Mexico. Interested in research and study groups about Control Theory, Mathematics, Physics and Electronics.
Ph. D. in Automatic Control
Member of National Research System Level 1, Mexico.
Interested in research and study groups about Control Theory, Mathematics, Physics and Electronics.
| Nombre | CESAR ULISES SOLIS CERVANTES |
|---|---|
| Área | INGENIERÍAS Y DESARROLLO TECNOLÓGICO |
| Campo | INGENIERÍA |
| Disciplina | OTRAS |
| Especialidad | CONTROL AUTOMATICO |
| CVU | 552608 |
| Institución | |
|---|---|
| Dependencia | UNIDADES ACADEMICAS DE NIVEL SUPERIOR |
| Entidad | CIUDAD DE MEXICO |
| Nivel | 1 |
| Vigencia | Inicio: 01/01/2021 |
| Fin: 31/12/2027 |
Publicaciones ORCID
- 2026
- Controlled Neural ODE and GRU Models for Physics-Based Multiclass Fault Detection in Quadrotor Drones Científica
- A Differential-Game Model of Unfair Competitive Pressure with Bounded Nonlinear Dynamics: An Application of Boltyanski–Poznyak’s Robust Maximum Principle International Game Theory Review
- Variational derivation of a relay hysteresis controller for relative-degree-one nonlinear affine systems with bounded control Systems & Control Letters
- Transformer- and GRU-Based Identification of Open-Chain Robot Kinematics Using Product-of-Exponentials Coordinates Technologies
- Gradient Descent with Time-Decaying Regularization for Training Linear Neural Networks Computer Modeling in Engineering & Sciences
- Finite-Time Consensus With Unknown Constant Delays via a Graph-Embedded Emulator IEEE Control Systems Letters
- Non-adversarial Image Generative Algorithm Based on Random Convex Combination in Clustered Features
- Stability-Certified Extremum Seeking Control of Open-Chain Robots with Unknown Constant Input Delays via Lyapunov–Krasovskii LMIs IEEE Robotics and Automation Letters
- 2025
- Finite-time attractor optimization based on differential lagrange multipliers Optimization
- Non-Iterative Recovery Information Procedure with Database Inspired in Hopfield Neural Networks Computation


