Area of research
Electrical and Electronic Engineering · Control and Systems Engineering
Research interest
Research interests include Control theory (sociology), Magnet, Torque, Robustness (evolution), Computer science, and Fault tolerance.
Relative Speed Compensation for Sensorless Control of Magnetic Screw Motor Based on an Improved Pulsating Current Injection Method
A Multi-Mode High-Efficiency Fault-Tolerant Permanent Magnet Machine
Design and Analysis of a Novel Hybrid Rotor PM Machine Considering Negative Torque Ripple Contribution
Frequency Adaptive Disturbance Observer for Sensorless Control of a 3 × 3-Phase PMA-SynRM Driven by Mono-Inverter
Fault-Tolerant Control of a Triple Redundant PMA-SynRM for Minimum Torque Ripple
Robust virtual‐vector model predictive control of permanent‐magnet motor considering <i>D</i> ‐ <i>Q</i> axis inductance parameter uncertainty
Fast Response Sliding Mode Linear Speed Control of a Magnetic Screw Motor Based on Feedforward Compensation Strategy
Effective Position Error Compensation in Sensorless Control Based on Unified Model of SPMSM and IPMSM
Active Disturbance Rejection Control of a Magnetic Screw Motor for High Tracking Performance
Design and Manufacture of a Linear Actuator Based on Magnetic Screw Transmission
A Novel Double-Stator Tubular Vernier Permanent-Magnet Motor With High Thrust Density and Low Cogging Force
Design and Comparison of Two Fault-Tolerant Interior-Permanent-Magnet Motors
Design and Analysis of the New High-Reliability Motors With Hybrid Permanent Magnet Material