Area of research
Electrical and Electronic Engineering · Control and Systems Engineering
Research interest
Research focused on Control theory (sociology) and Model predictive control, with related work in Torque, Robustness (evolution), Converters. Notable publications include 'Latest Advances of Model Predictive Control in Electrical Drives—Part I: Basic Concepts and Advanced Strategies', 'Finite-Control-Set Model Predictive Torque Control With a Deadbeat Solution for PMSM Drives', and 'Latest Advances of Model Predictive Control in Electrical Drives—Part II: Applications and Benchmarking With Classical Control Methods'.
Latest Advances of Model Predictive Control in Electrical Drives—Part I: Basic Concepts and Advanced Strategies
Latest Advances of Model Predictive Control in Electrical Drives—Part II: Applications and Benchmarking With Classical Control Methods
Active Disturbance-Rejection-Based Speed Control in Model Predictive Control for Induction Machines
Advanced Control Strategies of Induction Machine: Field Oriented Control, Direct Torque Control and Model Predictive Control
A Very Simple Strategy for High-Quality Performance of AC Machines Using Model Predictive Control
3D-encapsulated VHF MEMS resonator with high frequency stability and low vibration sensitivity
Nonlinear Direct Control for Three-Level NPC Back-to-Back Converter PMSG Wind Turbine Systems: Experimental Assessment With FPGA
Design and characterization of a 3D encapsulation with silicon vias for radio frequency micro-electromechanical system resonator
A Computationally Efficient Quasi-Centralized DMPC for Back-to-Back Converter PMSG Wind Turbine Systems Without DC-Link Tracking Errors
Finite-Control-Set Model Predictive Torque Control With a Deadbeat Solution for PMSM Drives
Electromagnetic Design and Loss Calculations of a 1.12-MW High-Speed Permanent-Magnet Motor for Compressor Applications
FPGA-Based Experimental Investigation of a Quasi-Centralized Model Predictive Control for Back-to-Back Converters