Area of research
Electrical and Electronic Engineering · Control and Systems Engineering
Research interest
Research interests include Magnet, Stator, Computer science, Armature (electrical engineering), Electromagnetic coil, and Control theory (sociology).
Simulation of Residual Stress Around Nano-Perforations in Elastic Media: Insights for Porous Material Design
MagNet Challenge for Data-Driven Power Magnetics Modeling
Molecular engineering of dibenzo-heterocyclic core based hole-transporting materials for perovskite solar cells
Optimal Scheduling of Virtual Power Plant Considering Wind and Solar Uncertainty and Integrated Demand Response
Evaluation of New Energy Accommodation Capacity of Power System Based on Time Series Production Simulation
Engineering Properties and Applications of Air-Foamed Lightweight Soil
Prediction of Whole Social Electricity Consumption in Jiangsu Province Based on Metabolic FGM (1, 1) Model
A Tutorial on General Air-Gap Field Modulation Theory for Electrical Machines
Design and analysis of genetic algorithm and BP neural network based PID control for boost converter applied in renewable power generations
A Linear Position Measurement Scheme for Long-Distance and High-Speed Applications
Design and Optimization of a Flux-Modulated Permanent Magnet Motor Based on an Airgap-Harmonic-Orientated Design Methodology
Systematic multi-level optimization design and dynamic control of less-rare-earth hybrid permanent magnet motor for all-climatic electric vehicles
Effects of Magnet Shape on Torque Capability of Surface-Mounted Permanent Magnet Machine for Servo Applications
A topology of DC electric springs for DC household applications
Comprehensive Diagnosis and Tolerance Strategies for Electrical Faults and Sensor Faults in Dual Three-Phase PMSM Drives
A Simple Active and Reactive Power Control for Applications of Single-Phase Electric Springs
Emerging Multiport Electrical Machines and Systems: Past Developments, Current Challenges, and Future Prospects
Distributed MPC-Based Secondary Voltage Control Scheme for Autonomous Droop-Controlled Microgrids
Advanced Electrical Machines and Machine-Based Systems for Electric and Hybrid Vehicles
Comparison of Flux-Switching PM Motors With Different Winding Configurations Using Magnetic Gearing Principle
Linear primary permanent magnet vernier machine for wave energy conversion
Comparison of Linear Primary Permanent Magnet Vernier Machine and Linear Vernier Hybrid Machine
Design of Five-Phase Modular Flux-Switching Permanent-Magnet Machines for High Reliability Applications
Design and Analysis of a New Modular Linear Flux-Reversal Permanent-Magnet Motor
Modeling of a Complementary and Modular Linear Flux-Switching Permanent Magnet Motor for Urban Rail Transit Applications
Remedial Injected-Harmonic-Current Operation of Redundant Flux-Switching Permanent-Magnet Motor Drives
Design and Analysis of a New Fault-Tolerant Linear Permanent-Magnet Motor for Maglev Transportation Applications
Comparison of Complementary and Modular Linear Flux-Switching Motors With Different Mover and Stator Pole Pitch
Control and operation of fault-tolerant flux-switching permanent-magnet motor drive with second harmonic current injection
EXPERIMENTAL COMPARISON OF REMEDIAL SINGLE-CHANNEL OPERATIONS FOR REDUNDANT FLUX-SWITCHING PERMANENT-MAGNET MOTOR DRIVE