Title :
An optimized shunt hybrid power quality conditioner for harmonic and reactive power compensation in distribution networks
Author :
Zhang, Ming ; Sun, Hui ; Zou, Jiyan
Author_Institution :
Dept. of Electr. & Electron. Eng., Dalian Univ. of Technol., China
Abstract :
This paper presents an optimized shunt hybrid power quality conditioner (SHPQC) for the compensation of harmonics and reactive power. An effective signal processing technique using the dq-transformation is applied to generate the reference signals for the current controller of the SHPQC. The conventional hysteresis current controller for the three-phase insulated gate bipolar transistor (IGBT) voltage source inverter (VSI) is replaced by a current regulated pulse width modulated space vector controller. And a novel controlled switching technology called synchronous switching is developed and applied in a medium-voltage vacuum circuit-breaker with permanent magnetic actuator and electronic control. Simulations and experimental results are presented verifying the excellent power quality improvement performance of the proposed topology while keeping the apparent power of the SHPQC minimal.
Keywords :
active filters; actuators; electric current control; insulated gate bipolar transistors; invertors; power distribution control; power supply quality; power system harmonics; pulse width modulation; static VAr compensators; vacuum circuit breakers; IGBT; VSI; active filters; distribution networks; dq-transformation; electronic control; harmonic compensation; hysteresis current controller; insulated gate bipolar transistor; medium-voltage vacuum circuit-breaker; optimization; permanent magnetic actuator; pulse width modulated space vector controller; reactive power compensation; shunt hybrid power quality conditioner; signal processing technique; synchronous switching; voltage source inverter; Insulated gate bipolar transistors; Power quality; Power system harmonics; Pulse width modulation inverters; Reactive power; Signal processing; Space technology; Space vector pulse width modulation; Switching circuits; Voltage control;
Conference_Titel :
Power System Technology, 2004. PowerCon 2004. 2004 International Conference on
Print_ISBN :
0-7803-8610-8
DOI :
10.1109/ICPST.2004.1460167