Area of research
Control and Systems Engineering · Electrical and Electronic Engineering
Research interest
Research focused on Phase-locked loop and Inverter, with related work in Inrush current, Grid, Synchronization (alternating current). Notable publications include 'An Inner-Loop Control Method for the Filter-less, Voltage Sensor-less, and PLL-less Grid-Following Inverter-Based Resource', 'An Ultra-Fast Inrush-Current-Free Startup Method for Grid-tie Inverter without Voltage Sensors', and 'Virtual Impedance-based Grid Synchronization for Converters Connected Through Long Cables'.
Switching-Cycle-Based Startup for Grid-Connected Inverters
Instant Startup and Grid Synchronization of Inverter Based Resources
Self-Synchronized Startup for Voltage Sensorless Grid-Tied Inverters
Virtual Resistor Control for Inverter-Based Resource with Long Underground Cables
An Innovative DC-DC Converter Design Offering Exceptionally High Voltage Gain and Reduced Voltage Stress
Enhancing Stability in Wind Energy: A Robust H-infinity Approach for Permanent Magnet Synchronous Generators
An Ultra-Fast Inrush-Current-Free Startup Method for Grid-tie Inverter without Voltage Sensors
Switching-Cycle-Based Startup for Grid-tied Inverters
A Voltage Sensor-Less and PLL-Less Inner-Loop Control Method for Grid-Tied Inverter-Based Resources
Impedance Modeling and Stability Analysis for the PLL-less and Voltage Sensor-less Grid-tied Converters
EMI Issues and Reduction in 800 V Electrical Vehicle Systems by Incorporating Cable Effects
Sensorless Vector Control for Induction Motor Startup Using Multilevel Converters
An Inner-Loop Control Method for the Filter-less, Voltage Sensor-less, and PLL-less Grid-Following Inverter-Based Resource
Improved De-Saturation Protection Circuits for Silicon Carbide MOSFET Gate Drivers
Virtual Impedance-based Grid Synchronization for Converters Connected Through Long Cables
Dead-time Effect Compensation of a 5-Level ANPC WBG Inverter for High Power Density Aviation Applications