Area of research
Electrical and Electronic Engineering · Automotive Engineering
Research interest
Research interests include Advanced DC-DC Converters, Multilevel Inverters and Converters, Advanced Battery Technologies Research, and Microgrid Control and Optimization.
Multi-Port Collaborative Control Strategy With Smooth Operational Transitions for Photovoltaics, Energy Storage, Direct Current, and Flexibility System
A Power Allocation Strategy for Hybrid Energy Storage System Based on Dynamic Virtual Impedance Network
High Gain Proportional Resonant Voltage Ripple Suppression for PWM Rectifiers Under Unbalanced Grid
Extended Dual Side Asymmetric Phase Shift Modulation and Smooth Mode Transition Method for Dual Active Bridge Converter
Sparse Self-Attentive Transformer With Multiscale Feature Fusion on Long-Term SOH Forecasting
DC Bus Capacitance Identification Method Based on Frequency Domain Data Drive for EV Charging System
A Power Allocation Method for Semiactive Battery–Supercapacitor Hybrid Power Supply System for Electric Aircraft
Back Propagation Artificial Neural Network Based DC Bus Capacitance Identification Method in Three-Phase PWM Rectifier for Charging System of EVs
A Dynamic Equivalent Current Feedforward Control Strategy With Variable Reference Current in Three-Phase PWM Rectifiers
An AC-DC Coupled Droop Control Strategy for VSC-Based DC Microgrids
A Multi-Inverter High-Power Wireless Power Transfer System With Wide ZVS Operation Range
Visceral adiposity index score indicated the severity of coronary heart disease in Chinese adults
EXPRESSION OF CONCERN: Simultaneous modulation of COX‐2, p300, Akt, and Apaf‐1 signaling by melatonin to inhibit proliferation and induce apoptosis in breast cancer cells