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Optimal placement and sizing of Static Var Compensators in power systems using Improved Harmony Search Algorithm

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
PL
Optymalizacja lokalizacji kompensatora mocy biernej z wykorzystaniem algorytmu IHS
Języki publikacji
EN
Abstrakty
EN
This paper presents the application of the improved harmony search (IHS) algorithm for determining the optimal location and sizing of static Var compensator (SVC) to improve the voltage profile and reduce system power losses. A multi-criterion objective function comprising of both operational objectives and investment costs is considered. The results on the 57-bust test system showed that the IHS algorithm give lower power loss and better voltage improvement compared to the particle swarm optimization method in solving the SVC placement and sizing problem.
PL
Artykuł przedstawia zastosowanie algorytmu IHS (Improved harmony search) do określania optymalnej lokalizacji kompensatora mocy biernej. Rezultaty testów wykazały że algorytm zapenia mniejsze straty mocy oraz zniekształcenia w porównaniu do innych metod optymalizacji.
Rocznik
Strony
214--218
Opis fizyczny
Bibliogr. 13 poz., rys., tab., wykr.
Twórcy
autor
autor
autor
  • Department of Electrical, Electronic and Systems Engineering, Universiti Kebangsaan Malaysia, 43600 Bangi, Selangor, Malaysia, sirjani@eng.ukm.my
Bibliografia
  • [1] Saravanan M.,Slochanal S.M.R.,Venkatesh P., Prince Stephen Abraham J., Application of particle swarm optimization technique for optimal location of FACTS devices considering cost of installation and system loadability, Electric Power System Research, 77 (2007), 276-283.
  • [2] Galiana G.D., "Assessment and Control of the Impact of FACTS devices on Power System Performance," IEEE Trans. Power Sysf,11 (1996) , No. 4, 1931-1936
  • [3] Minguez R., Milano F., Zarate-Minano R., Conejo A., Optimal Network Placement of SVC Devices, IEEE Trans. Power Sys( 22(2007), No. 4,1851-1861
  • [4] Singh J.G., Singh S. N., Srivastava S. C., Ań Approach for Optimal Placement of Static VAR Compensators Based on Reactive Power Spot Price, IEEE Trans. Power Syst,22 (2007), No.4, 2021-2029.
  • [5] Hsiao Y.T., Liu C.C., Chiang H.D., A new approach for optimal VAR sources planning in large scalę electric power systems, IEEE Trans. Power Syst, 8 (1993), 988-996.
  • [6] Pisica I., Bulac C., Toma L., Eremia M., Optimal SVC Placement in Electric Power Systems Using a Genetic Algorithms Based Method, IEEE Bucharest Power Tecti Conference(2009),1-6.
  • [7] Ishak S., Abidin A.F., Rahinan T.K.A.,Static Var Compensator Planning Using Artificial Immune System For Loss Minimisation And Voltage lmprovement, National Power & Energy Conference (PECon) 2004 Proceedings, Kuala Lumput. Malaysia,(2004), 41-46.
  • [8] Sundareswaran K.,Hariharan B. .Parasseri F. P., Antony D.S.. Subair B. , Optimal Placement of Static Var Compensators (SVC's) Using Particle Swarm Optimization, International Conference on Power, Control and Embedded Systems (ICPCES), (2010), 1-4.
  • [9] Kazemi A., Parizad A. , Baghaee H., On the use of harmony search algorithm in optimal placement of FACTS devices to improve power system security, Proceedings of the IEEE Euroconjehran, Iran, (2009),570-576.
  • [10] Etemadzadeh R.,Nabavi R. , Shayanfar H.A., Optimal Placement of SVC Based on Line Flow Base Equation Using Mixed Integer Nonlinear Programming , Power and Energy Engineering Conference (APPEEC), (2010), 1-5.
  • [11] Lee K. , Geem Z., A new meta-heuristic algorithm for continuous engineering optimization: harmony search theory and practice, Computer Methods in Applied Mechanics and Engineering ,194 (2005), 3902-3933.
  • [12] Mahdavi M., Fesanghary M., Damangir E., Ań improved harmony search algorithm for solving optimization problems, Applied Mathematics and Computation, 188 (2007), 1567-1579.
  • [13] Power Systems Test Case Archive, University of Washington, http://www.ee.washington.edu/research/pstca/
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-PWA7-0045-0050
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