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Języki publikacji
Abstrakty
This paper presents a new strategy for optimal placement of multi-type FACTS devices with a view to minimize losses besides enhancing the voltage profile using biogeography based optimization. The strategy places three types of FACTS devices that include static VAR compensator, thyristor controlled series compensator and unified power flow controller; and offers optimal locations for placement, type and parameters of the FACTS devices. Test results on IEEE 14, 30 and 57 bus systems reveal the superiority of the algorithm.
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
517--531
Opis fizyczny
Bibliogr. 17 poz., rys., tab.
Twórcy
autor
autor
- Department of Electrical and Electronics Engineering VRS College of Engineering and Technology Arasur, Villupuram Dist, Tamil Nadu, India, subramaniananna@gmail.com
Bibliografia
- [1] Hingorani N.G., Gyugyi L., Understanding FACTS: Concepts and technology of flexible AC transmissionsystems. IEEE Press, pp. 1-29 (2000).
- [2] Gotham D.J., Heydt G.T., Power flow control and power flow studies for systems with FACTS devices. IEEE Trans. on Power Syst. 13(1) (1988).
- [3] Yoshida H., Kawata K., Fukuyama Y. et al., A particle swarm optimization for reactive power andvoltage control considering voltage security assessment. IEEE Trans. on Power Systems 15(4) (2000).
- [4] Song S.-H., Lim J.-UK, Moon S.-II, FACTS Operation Scheme for Enhancement of power systemSecurity. Bolonga Power Tech Conference, Bolonga, Italy, pp. 23-26 (2003).
- [5] Venkataramu P.S., Ananthapadmanabha T., Installation of Unified power flow controller for voltagestability margin enhancement under line outage contingencies. Iranian Journal of Electrical and Computer Engineering 5(2) (2006).
- [6] Tripathy M., Mishra S., Bacteria foraging-based solution to optimize both real power loss and voltagestability limit. IEEE Trans. on Power Systems 22(1), (2007).
- [7] Lin Jineng, Wang Xudong, Zheng Weihong, Reactive power optimization based on adaptive immunealgorithm. Proceedings of the International Multi Conference of Engineers and computer scientists, IMECS, Hong Kong, pp. 19-21 (2008).
- [8] Liu Hongchao, Peng Jianchun, Rasearch of a new reactive power optimization method consider ofthe voltage optimization of the whole electric network. IEEE Conference (2009).
- [9] Bindeshwar S.R. et.al, Prevention of voltage instability by using FACTS controllers in powersystems: A Literature survey. International Journal of Engineering Science and Technology 2(5): 980-992 (2010).
- [10] Zhu J., Cheung K., Hwang D., Sadjadpour A., Operation strategy for improving voltage profile andreducing system loss. IEEE Trans.on Power Delivery 25(1) (2010).
- [11] Subramanian A., Ravi G., Voltage collapse enhancement and loss reduction by reactive power reserve. International Journal of Computer Applications 12(12) (2011).
- [12] Wibowo R.S., Yorino N., Ehbal M., Zoka Y., Sasaki Y., FACTS devices allocation with control coordinationconsidering congestion relief and voltage stability. IEEE Trans. on Power Systems 26(4) (2011).
- [13] Simon D., Biogeography-based optimization. IEEE Trans. on Evolutionary Computation 12(6): 702-713 (2008).
- [14] Bhattachary A. Chattopadhyay P.K., Solution of optimal reactive power flow using Biogeographybasedoptimization. International Journal of Energy and Power Engineering 3(4): 269-277 (2010).
- [15] Bhattacharya A., Chattopadhyay P.K., Biogeography - base optimization for different economicload dispatch problems. IEEE Trans.on Power Systems 25(2): 1064-1077 (2010).
- [16] Rarick R., Simon D., Villaseca F.E., Vakaranam B., Biogeography-based optimization and the solutionof the power flow problem. Proceedings of the 2009 IEEE International Conference on Systems, Man and Cybernetics, San Antonio TX, USA, October 2009, pp. 1029-1034 (2009).
- [17] Stagg G.W., El-Abiad A.H., Computer methods in power system analysis. Mc-Graw-Hill (1968).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS4-0003-0056