Title :
“Mitigation of current harmonics and unballances using power electronic transformer”
Author :
Banaei, Mohammad Reza ; Salary, Ebrahim
Author_Institution :
Azarbaijan Univ. of Tarbiat Moallem, Tabriz, Iran
Abstract :
The widespread increase of non-linear loads nowadays, significant amounts of harmonic currents are being injected into power systems. Active power filters (APF) have proved to be an interesting and effective solution to compensate current harmonics and reactive power in power distribution systems. Power electronic transformer (PET) is a new type of transformer, which realizes voltage transformation and power delivery in a power system through power electronic conversion. The proposed PET performs typical functions and has advantages such as power factor correction, voltage regulation, voltage sag and swell elimination, voltage flicker reduction and protection capability in fault situations. In this paper, parallel operation of PET to compensate current harmonics, unbalance currents and reactive power in power distribution systems the same as APF is discussed. In the other hands, synchronous by feeding special loads by PET, this transformer acts as APF. Power quality improvement with power electronic transformer has been verified by the simulation results with MATLAB/SIMULINK.
Keywords :
power conversion; power factor correction; power harmonic filters; power supply quality; power transformers; reactive power; voltage control; MATLAB/SIMULINK; active power filters; harmonic currents; mitigation; power delivery; power distribution systems; power electronic conversion; power electronic transformer; power factor correction; power quality improvement; protection capability; reactive power; unbalance currents; voltage flicker reduction; voltage regulation; voltage sag; voltage transformation; Current Harmonics And Unbalances; Power Electronic Transformer; Power Quality Improvement;
Conference_Titel :
Power Quality Conference (PQC), 2010 First
Conference_Location :
Tehran
Print_ISBN :
978-1-4244-8483-6
Electronic_ISBN :
978-964-463-063-7