Title :
Power Electronic Hybrid System for Load Balancing Compensation and Frequency-Selective Harmonic Suppression
Author :
Luo, An ; Peng, Shuangjian ; Wu, Chuanping ; Wu, Jingbing ; Shuai, Zhikang
Author_Institution :
Coll. of Electr. & Inf. Eng., Hunan Univ., Changsha, China
Abstract :
The proposed power electronic hybrid system which consists of a thyristor-controlled reactor (TCR) and a resonant-impedance-type hybrid active power filter (RITHAPF) is used for compensating reactive power and harmonic current. From the point of the nature of load balancing compensation, the calculation of balancing controlled susceptance based on voltage vector transformation is proposed for the TCR to exactly compensate negative-sequence current caused by asymmetrical loads in industrial field. Because the impedance of a filter inductor, a matching transformer, and passive power filters according to the harmonic current is inductive, the phase of the RITHAPF compensating current through them would be shifted. A π-aimed Smith predictor is established based on the fact that there is a π delay between the compensating current and the sum of harmonic currents of loads and the TCR. In terms of the proposed predictor and generalized integrators, a frequency-selective predictive current controller is designed for perfectly eliminating the impact of phase shift on the RITHAPF filtering performance. The simulation and industrial application results validate the theoretical analysis.
Keywords :
active filters; delays; electric admittance; electric current control; load regulation; passive filters; power electronics; power harmonic filters; power transformers; predictive control; reactive power control; thyristors; π-aimed Smith predictor; RITHAPF compensating current; filter inductor; frequency selective predictive current controller; frequency-selective harmonic suppression; harmonic current; load balancing compensation; passive power filter; power electronic hybrid system; reactive power compensation; resonant-impedance-type hybrid active power filter; thyristor-controlled reactor; transformer matching; voltage vector transformation; Active filters; Delay; Harmonic analysis; Impedance; Power filters; Power harmonic filters; Reactive power; Active filters; generalized integrator; negative-sequence current; power electronics; power filters; power quality; predictive control; reactive power control; thyristors;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2011.2161066