Title :
Co-ordinated three-phase hysteretic-control scheme for active power filtering
Author :
Doulai, P. ; Ledwich, G.
Author_Institution :
Dept. of Electr. & Comput. Eng., Wollongong Univ., NSW, Australia
fDate :
9/1/1992 12:00:00 AM
Abstract :
The authors examine a three-phase hysteretic-control algorithm, applicable to a voltage-source inverter for real-time implementation of power systems active power filtering. Special features of the proposed scheme are: co-ordinated hysteretic controller operating on the radial and tangential components of the busbar-voltage error, and the use of a microcontroller to implement the co-ordinate frame transformation, setting the switching parameters required by the hysteretic comparators, and monitoring the inverter-synthesised switching frequency. Provision for real-rime tailoring of the tangential hysteresis hand has been made to supplement the co-ordination scheme. The proposed algorithm is experimentally verified on a low-power prototype circuit. The experimental results have shown that the hysteretic controller can approach the generation of a fully optimised and uniform three-phase switching pattern with a corresponding reduction in residual harmonic distortion. The results also showed the desired regularity of the radial/tangential error trajectory with nearly constant average switching frequency
Keywords :
active filters; invertors; microcontrollers; power system computer control; switching; voltage control; active power filtering; busbar-voltage error; co-ordinate frame transformation; co-ordinated hysteretic controller; frequency monitoring; inverter-synthesised switching frequency; microcontroller; power systems; residual harmonic distortion; switching parameters; tangential hysteresis; three-phase hysteretic-control algorithm; three-phase switching pattern; voltage-source inverter;
Journal_Title :
Electric Power Applications, IEE Proceedings B