DocumentCode
606619
Title
Sensitivity factor for power system security analysis using LabVIEW
Author
Souag, S. ; Benhamida, F. ; Salhi, Y. ; Bendaoud, Abdelber ; Gherbi, F.Z.
Author_Institution
Dept. of Electrotechnics, UDL Univ. of Sidi Bel Abbes, Sidi Bel Abbes, Algeria
fYear
2013
fDate
7-9 March 2013
Firstpage
385
Lastpage
390
Abstract
In this paper we present a calculation method for sensitivity factor for power system security based on dc power flow using the graphical programming environment of LabVIEW. The dc power flow simplifies the power flow by making a number of approximations including 1) completely ignoring the reactive power balance equations, 2) assuming all voltage magnitudes are identically one per unit, 3) ignoring line losses and 4) ignoring tap dependence in the transformer reactance. Hence the dc power flow reduces the power flow problem to a set of linear equations. For this purpose we have developed a virtual instrument (VI) suitable for contingency analysis for both line outage distribution factor (LODF) and Generation Shift Distribution Factor (GSDF). To validate the proposed VI, the dc solution load value has been increased to match the total ac load plus losses, a manner to make comparison between the ac and dc solution results possible. The effectiveness of the method developed is identified through its application to a 6 buses test system. The calculation results show excellent performance of the proposed method, in regard to computation time and quality of results.
Keywords
load flow; power system security; power transformers; reactive power; 6 buses test system; GSDF; LODF; LabVIEW; contingency analysis; dc power flow; generation shift distribution factor; graphical programming environment; line outage distribution factor; linear equations; power system security analysis; reactive power balance equations; sensitivity factor; transformer reactance; virtual instrument; Convergence; Equations; Generators; Instruments; Load flow; Mathematical model; Sensitivity; LabVIEW; contingency analysis; dc power flow; power system security; virtual instrument;
fLanguage
English
Publisher
ieee
Conference_Titel
Renewable and Sustainable Energy Conference (IRSEC), 2013 International
Conference_Location
Ouarzazate
Print_ISBN
978-1-4673-6373-0
Type
conf
DOI
10.1109/IRSEC.2013.6529671
Filename
6529671
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