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Dr. Van-Tung Phan
Dr. Van-Tung Phan
Assistant Professor in Electrical Power Engineering, Newcastle University
Verified email at newcastle.ac.uk - Homepage
Title
Cited by
Cited by
Year
Control strategy for harmonic elimination in stand-alone DFIG applications with nonlinear loads
VT Phan, HH Lee
IEEE transactions on power electronics 26 (9), 2662-2675, 2011
1762011
A novel smart energy theft system (SETS) for IoT-based smart home
W Li, T Logenthiran, VT Phan, WL Woo
IEEE Internet of Things Journal 6 (3), 5531-5539, 2019
1702019
Performance enhancement of stand-alone DFIG systems with control of rotor and load side converters using resonant controllers
VT Phan, HH Lee
IEEE transactions on industry applications 48 (1), 199-210, 2011
1592011
Implemented IoT-based self-learning home management system (SHMS) for Singapore
W Li, T Logenthiran, VT Phan, WL Woo
IEEE Internet of Things Journal 5 (3), 2212-2219, 2018
1322018
Intelligent Control System for Microgrids Using Multi-Agent System
T Logenthiran, RT Naayagi, WL Woo, V Phan, K Abidi
IEEE Journal of Emerging and Selected Topics in Power Electronics 3 (4 …, 2015
982015
Improved predictive current control for unbalanced stand-alone doubly-fed induction generator-based wind power systems
VT Phan, HH Lee
IET Electric Power Applications 5 (3), 275-287, 2011
682011
Multiple output inductive charger for electric vehicles
VB Vu, VT Phan, M Dahidah, V Pickert
IEEE Transactions on Power Electronics 34 (8), 7350-7368, 2018
592018
A high-power multiphase wireless dynamic charging system with low output power pulsation for electric vehicles
VB Vu, M Dahidah, V Pickert, VT Phan
IEEE Journal of Emerging and Selected Topics in Power Electronics 8 (4 …, 2019
532019
Implementation of demand side management of a smart home using multi-agent system
W Li, T Logenthiran, WL Woo, VT Phan, D Srinivasan
2016 IEEE Congress on Evolutionary Computation (CEC), 2028-2035, 2016
472016
Stationary frame control scheme for a stand-alone doubly fed induction generator system with effective harmonic voltages rejection
VT Phan, HH Lee
IET electric power applications 5 (9), 697-707, 2011
462011
An improved LCL-L compensation topology for capacitive power transfer in electric vehicle charging
VB Vu, M Dahidah, V Pickert, VT Phan
IEEE Access 8, 27757-27768, 2020
442020
An improved control strategy using a PI-resonant controller for an unbalanced stand-alone doubly-fed induction generator
VT Phan, HH Lee, TW Chun
Journal of Power Electronics 10 (2), 194-202, 2010
392010
Lagrangian relaxation hybrid with evolutionary algorithm for short-term generation scheduling
VTP Thillainathan Logenthiran, Wai Lok Woo
International Journal of Electrical Power & Energy Systems 64, 356-364, 2015
332015
Harmonics rejection in stand-alone doubly-fed induction generators with nonlinear loads
VT Phan, DT Nguyen, QN Trinh, CL Nguyen, T Logenthiran
IEEE Transactions on Energy Conversion 31 (2), 815-817, 2016
292016
Enhanced proportional-resonant current controller for unbalanced stand-alone DFIG-based wind turbines
VT Phan, HH Lee
Journal of Electrical Engineering and Technology 5 (3), 443-450, 2010
272010
Intelligent multi-agent system for power grid communication
W Li, T Logenthiran, VT Phan, WL Woo
2016 IEEE Region 10 Conference (TENCON), 3386-3389, 2016
262016
Analysis and compensation of voltage unbalance of a DFIG using predictive rotor current control
VT Phan, T Logenthiran, WL Woo, D Atkinson, V Pickert
International Journal of Electrical Power & Energy Systems 75, 8-18, 2016
252016
An improved control method for DFIG-based wind system supplying unbalanced stand-alone loads
VT Phan, SH Kwak, HH Lee
2009 IEEE International Symposium on Industrial Electronics, 1081-1086, 2009
252009
A multi-output capacitive charger for electric vehicles
VB Vu, LBM Kamal, J Tay, V Pickert, M Dahidah, T Logenthiran, VT Phan
2017 IEEE 26th International Symposium on Industrial Electronics (ISIE), 565-569, 2017
242017
An effective rotor current controller for unbalanced stand-alone DFIG systems in the rotor reference frame
VT Phan, HH Lee, TW Chu
Journal of Power Electronics 10 (6), 724-732, 2010
222010
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