Area of research
Control and Systems Engineering · Electrical and Electronic Engineering
Research interest
Research focused on Control theory (sociology) and Suspension (topology), with related work in Nonlinear system, Voltage droop, Digital image correlation. Notable publications include 'Nonlinear Model Analysis and “Switching Model” of AC–DC Three-Degree-of-Freedom Hybrid Magnetic Bearing', 'Coupling Suspension Force Regulator Considering Time-Varying Characteristic for a Bearingless Switched Reluctance Motor', and 'Data-Driven Fuzzy Sliding Mode Observer-Based Control Strategy for Time-Varying Suspension System of 12/14 Bearingless SRM'.
Design of Integral-Based HOSM Controller Under Perturbations of Unknown Magnitudes
RUL Prediction of Rolling Bearings With MVGA-DSAL: A Multiscale Variant Gaussian Attention Model With Depth-Wise Sparse Attention LSTM
Data-Driven Fuzzy Sliding Mode Observer-Based Control Strategy for Time-Varying Suspension System of 12/14 Bearingless SRM
Adaptive Feature-Oriented Dictionary Learning and Sparse Classification Framework for Bearing Compound Fault Diagnosis
Control Strategy for Time-Varying Suspension System of 12/14 Bearingless Switched Reluctance Motor
A Study on Damage of T800 Carbon Fiber/Epoxy Composites under In-Plane Shear Using Acoustic Emission and Digital Image Correlation
Coupling Suspension Force Regulator Considering Time-Varying Characteristic for a Bearingless Switched Reluctance Motor
Adaptive Droop Coefficient and SOC Equalization-Based Primary Frequency Modulation Control Strategy of Energy Storage
A new type of sinusoidal suspension winding Consequent-pole Bearingless Permanent Magnet Synchronous Motor
Nonlinear Model Analysis and “Switching Model” of AC–DC Three-Degree-of-Freedom Hybrid Magnetic Bearing