Area of research
Electrical and Electronic Engineering · Control and Systems Engineering
Research interest
Research focused on Control theory (sociology) and Magnet, with related work in Torque, Direct torque control, Maglev. Notable publications include 'Finite-Control-Set Model Predictive Torque Control With a Deadbeat Solution for PMSM Drives', 'High-Temperature Superconducting Linear Synchronous Motors Integrated With HTS Magnetic Levitation Components', and 'Advanced Linear Machines and Drive Systems'.
Adaptive Fast Super-Twisting Sliding Mode Direct Thrust Control for Linear Induction Machine Adapted to Linear Metro
High-precision frequency measurement approach of diminishing multi-source errors for UAV-based aeromagnetic survey
Research on Efficiency Optimization Control Strategy of Axial Field Flux-Switching Permanent Magnet Motor
A systematic approach for designing a highly efficient linear electrical generator for harvesting oceanic wave energy
Permanent Magnet Synchronous Machines and Drives
Rapid Evaluation Model of Endurance Performance and Its Application for Agricultural UAVs
Advances in Control Techniques for Smart Grid Applications
Fault Analysis and Diagnosis for Induction Motor Based on Hilbert Transform and Support Vector Machine Classification Method
Maximization of the Generated Electrical Power of a Superconducting DDLG for Wave Energy Extraction
Advanced Linear Machines and Drive Systems
Core Loss Minimization of the Linear Generator by Using High Graded Magnetic Materials for Harvesting Oceanic Wave Energy
Guest Editorial Joint Special Section on Power Conversion & Control in Photovoltaic Power Plants
Robust Flux Estimation Method for Linear Induction Motors Based on Improved Extended State Observers
Finite-Control-Set Model Predictive Torque Control With a Deadbeat Solution for PMSM Drives
High-Temperature Superconducting Linear Synchronous Motors Integrated With HTS Magnetic Levitation Components