DocumentCode
1425728
Title
Proposed Shunt Rounding Technique for Large-Scale Security Constrained Loss Minimization
Author
Macfie, Peter J. ; Taylor, Gareth A. ; Irving, Malcolm R. ; Hurlock, Paul ; Wan, Hai-Bin
Author_Institution
Nat. Grid, Wokingham, UK
Volume
25
Issue
3
fYear
2010
Firstpage
1478
Lastpage
1485
Abstract
Optimal reactive power flow applications often model large numbers of discrete shunt devices as continuous variables, which are rounded to their nearest discrete value at the final iteration. This can degrade optimality. This paper presents novel methods based on probabilistic and adaptive threshold approaches that can extend existing security constrained optimal reactive power flow methods to effectively solve large-scale network problems involving discrete shunt devices. Loss reduction solutions from the proposed techniques were compared to solutions from the mixed integer nonlinear mathematical programming algorithm (MINLP) using modified IEEE standard networks up to 118 buses. The proposed techniques were also applied to practical large-scale network models of Great Britain. The results show that the proposed techniques can achieve improved loss minimization solutions when compared to the standard rounding method.
Keywords
power systems; reactive power control; large-scale security constrained loss minimization; loss reduction solutions; mixed integer nonlinear mathematical programming algorithm; optimal reactive power flow; shunt rounding technique; Discrete shunt control; integer programming; large-scale transmission networks; loss minimization; optimal control; optimization methods; power system modeling; reactive power control; security constrained optimal reactive power flow;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2010.2041675
Filename
5419954
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