M.A. Abdel-Moamen and N. Prasad Padhy
[1] J. Carpentier, Contribution a l’´etude du dispatchingeconomique, Bulletin de la Soci´et´e Fran¸caise des Electriciena,Ser. 8, Vol. 3, August 1962, 431–447. [2] M. Huneault & F.D. Galiana, A survey of the optimal powerflow literature, IEEE Trans. on Power Systems, 6(2), 1991,762–770. doi:10.1109/59.76723 [3] A.J. Wood & B.F. Wollenberg, Power generation, operation,and control (New York: John Wiley and Sons, 1996). [4] J.A. Momoh, M.E. Elhawary, & R. Adapa R, A review ofselected optimal power flow literature to 1993, Parts 1 and 2,IEEE Trans. on Power Systems, 14(1), 1999, 96–111. doi:10.1109/59.744492 [5] N.G. Hingorani, Power electronics in electrical utilities: Role ofpower electronics in future power systems, Proc. IEEE, 76(4),1988, 481–482. doi:10.1109/5.4432 [6] M. Noroozian, L. Angquist, M. Ghandhari, & G. Andersson,Improving power system dynamics by series-connected FACTSdevices, IEEE Trans. on Power Delivery, 12(4), 1997, 1635–1641. doi:10.1109/61.634184 [7] G.N. Taranto, L.M.V.G. Pinto, & M.V.F. Pereira, Represen-tation of FACTS devices in power system economic dispatch,IEEE Trans. on Power Systems, 7(2), 1992, 572–576. doi:10.1109/59.141761 [8] T. Hiyama, M. Mishiro, H. Kihara, & T.H. Ortmeyer, Coordi-nated fuzzy logic control for series capacitor modules and PSSto enhance stability of power system, IEEE Trans. on PowerDelivery, 10 (2), 1995, 1098–1104. doi:10.1109/61.400877 [9] D.J. Gotham & G.T. Heydt, Power flow control and powerflow studies for systems with FACTS devices, IEEE Trans. onPower Systems, 13(1), 1998, 60–65. doi:10.1109/59.651614 [10] S.Y. Ge & T.S. Chung, Optimal active power flow incorporatingFACTS devices with power flow control constraints, ElectricalPower & Energy Systems, 20(5), 1998, 321–326. doi:10.1016/S0142-0615(97)00081-1 [11] D. Povh, Use of HVDC and FACTS, Proc. IEEE, 88(2), 2000,235–245. doi:10.1109/5.824001 [12] H. Ambriz-Perez, E. Acha, & C.R. Fuerte-Esquivel, AdvancedSVC model for Newton-Raphson load flow and Newton optimalpower flow studies, IEEE Trans. on Power Systems, 15(1),2000, 129–136. doi:10.1109/59.852111 [13] C.R. Fuerte, E. Acha, S.G. Tan, & J.J. Rico, Efficient objectoriented power systems software for the analysis of large-scalenetworks containing FACTS-controlled branches, IEEE Trans.on Power Systems, 13(2), 1998, 464–472. doi:10.1109/59.667370 [14] L. Yunqiang & A. Abur, Improving system static securityvia optimal placement of thyrister controlled series capacitor(TCSC), IEEE PES, WM, Columbus, OH, 2, 2001, 516–521. doi:10.1109/PESW.2001.916901 [15] R. Billinton, M.F. Firuzabad, & S.O. Faried, Power systemreliability enhancement using a thyristor controlled series ca-pacitor, IEEE Trans. on Power Systems, 14(1), 1999, 369–374. doi:10.1109/59.744557 [16] T.S. Chung & Y.Z. Li, A hybrid GA approach for OPF withconsideration of FACTS devices, IEEE Power EngineeringReview, 21(2), 2001, 47–50. doi:10.1109/39.896822 [17] I.D. Sun, B. Ashley, B. Bewer, A. Hughes, & E.W. Tinney,Optimal power flow by Newton approach, IEEE Trans. onPower Apparatus and Systems, PAS 103 (10), 1984, 2864–2875. doi:10.1109/TPAS.1984.318284 [18] M.A. Abdel-Moamen & N.P. Padhy, Newton-Raphson TCSCmodel for power flow solution of practical power networks,IEEE PES, SM, 3, 2002, 1488–1493.64 doi:10.1109/PESS.2002.1043640 [19] O. Alsac & B. Stott, Optimal power flow with steady-statesecurity, IEEE Trans. on Power Apparatus and Systems, PA-93 (3), 1974, 745–751. doi:10.1109/TPAS.1974.293972 [20] Power Systems Test Case, University of Washington Archive,available at http://www.ee.washington.edu/research/pstca/,2000.
Important Links:
Go Back