DocumentCode
43579
Title
Characterizing Voltage Sags and Swells Using Three-Phase Voltage Ellipse Parameters
Author
Alam, Mollah Rezaul ; Muttaqi, K.M. ; Bouzerdoum, Abdesselam
Author_Institution
Sch. of Electr., Comput. & Telecommun. Eng., Univ. of Wollongong, Wollongong, NSW, Australia
Volume
51
Issue
4
fYear
2015
fDate
July-Aug. 2015
Firstpage
2780
Lastpage
2790
Abstract
This paper presents an algorithm for detection, classification, and characterization of voltage sags and swells in electricity networks using three-phase voltage ellipse parameters. The proposed method employs the instantaneous magnitude of three-phase voltage signals in three axes, which are separated from each other by 120°. Thus, the resultant rotating vector, namely, the three-phase voltage vector, traces an ellipse. Then, the parameters of the ellipse, which include minor axis, major axis, and inclination angle, are used to develop the proposed algorithm for classification and characterization of voltage sags and swells. The proposed method is validated using real data of the IEEE working group and some measured real data of the Belgian transmission grid. The method is further tested for the sags and swells generated due to balanced and unbalanced faults at different buses, in test distribution networks (radial and mesh type) embedded with distributed generation and in a practical distribution network of Australia. This paper also demonstrates the proposed algorithm as a real-time sag/swell monitoring tool.
Keywords
distributed power generation; power distribution faults; power grids; power supply quality; vectors; Belgian transmission grid; IEEE working group; distributed generation; electricity networks; mesh type; radial type; real-time sag-swell monitoring tool; resultant rotating vector; test distribution networks; three-phase voltage ellipse parameters; three-phase voltage signals; three-phase voltage vector; unbalanced faults; voltage sags; voltage swells; Australia; Classification algorithms; Educational institutions; Power quality; Real-time systems; Vectors; Voltage fluctuations; Distributed generation; phase angle jump; power quality; power quality (PQ); three-phase voltage ellipse; voltage sags; voltage swells;
fLanguage
English
Journal_Title
Industry Applications, IEEE Transactions on
Publisher
ieee
ISSN
0093-9994
Type
jour
DOI
10.1109/TIA.2015.2397176
Filename
7027818
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