DocumentCode :
2071598
Title :
A new instantaneous power theory-based three-phase active power filter
Author :
Chen, Shin-Kuan ; Chang, Gary W.
Author_Institution :
Dept. of Electr. Eng., Chung Chon Junior Coll. of Technol. & Commerce, Chang-Hun, Taiwan
Volume :
4
fYear :
2000
fDate :
2000
Firstpage :
2687
Abstract :
The active power filter has been proved to be an effective device to mitigate harmonic current and/or voltage distortions produced by nonlinear loads as well as to compensate reactive power. In the past some active power filters were designed based on the conventional instantaneous reactive power (IRP) theory. However, these types of filters can only compensate reactive power for the load. If the load generates harmonic current or is unbalanced, the conventional IRP theory-based active filter cannot compensate the harmonic distortion and does not function properly. In order to overcome the drawbacks of the conventional IRP theory, a new instantaneous power theory-based algorithm is proposed for the control strategy of the active filter. In this paper the implementation of a 10 kVA prototype active power filter which is developed based on the proposed control algorithm is present. Simulation and experimental results with varied source and load conditions are described to confirm that the new proposed control strategy achieves better performance for the active power filter than those obtained by using conventional IRP control strategies
Keywords :
active filters; compensation; harmonic distortion; power harmonic filters; power system harmonics; reactive power; 10 kVA; control strategy; harmonic current distortions mitigation; harmonic voltage distortions mitigation; instantaneous power theory; instantaneous reactive power theory; nonlinear loads; power disturbances; reactive power compensation; three-phase active power filter; unity power factor; Active filters; Filtering theory; Harmonic distortion; Power filters; Power generation; Power harmonic filters; Power quality; Power system harmonics; Reactive power; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Engineering Society Winter Meeting, 2000. IEEE
Print_ISBN :
0-7803-5935-6
Type :
conf
DOI :
10.1109/PESW.2000.847307
Filename :
847307
Link To Document :
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