Open Access

Critical Reviews of Load Flow Methods for Well, Ill and Unsolvable Condition

STOTT, B.: Review of Load-Flow Calculation Methods, Proc. IEEE 62 No. 1 (July 1974), 916-929.10.1109/PROC.1974.9544Search in Google Scholar

WU, F. F.: Theoretical Study of the Convergence of the Fast Decoupled Load Flow, IEEE Trans. Power Syst. 96 No. 2 (Jan/Feb 1977), 269-275.10.1109/T-PAS.1977.32334Search in Google Scholar

LUO, G. X.—SEMLYEN, A.: Efficient Load Flow for Large Weakly Meshed Networks, IEEE Trans. Power Syst., 5 No. 4 (Nov 1990), 1309-1316.10.1109/59.99382Search in Google Scholar

STOTT, B.: Effective Starting Process for Newton-Raphson Load Flows, IEEE Trans. Power App Proc. Inst. Elect. Eng. 118 No. 8 (Nov 1971), 983-987.10.1049/piee.1971.0197Search in Google Scholar

IWAMOTO, S.—TAMURA, Y.: A Fast Load Flow Method Retaining Nonlinearity, IEEE Trans. Power App. Syst. 97 No. 1 (Sep/Oct 1978), 1586-1599.10.1109/TPAS.1978.354650Search in Google Scholar

IWAMOTO, S.—TAMURA, Y.: A Load Flow Calculation Method for Ill Conditioned Power Systems, IEEE Trans. Power App. Syst. 100 No. 3 (Apr 1981), 1736-1743.10.1109/TPAS.1981.316511Search in Google Scholar

TRIPATHY, S. C.—PRASAD, G. D.—MALIK, O. P.—HOPE, G. S.: Load-Flow Solutions for Ill-Conditioned Power Systems by a Newton-Like Method, IEEE Trans. Power App. Syst. 101 No. 1 (Oct 1982), 3648-3657.10.1109/TPAS.1982.317050Search in Google Scholar

SCHAFFER, M. D.—TYLAVSKY, D. J.: A Nondiverging Polar Form Newton-Based Power Flow, IEEE Trans. Ind. App. 24 No. 1 (Sep/Oct 1988), 870877.10.1109/28.8993Search in Google Scholar

BRAZ, L. M. C.—CASTRO, C. A.—MURARI, C. A. F.: A Critical Evaluation of Step Size Optimization Based Load Flow Methods, IEEE Trans. Power Syst. 15 No. 1 (Feb 2000), 202-207.10.1109/59.852122Search in Google Scholar

TATE, J. E.—OVERBYE, T. J.: A Comparison of the Optimal Multiplier in Polar and Rectangular Coordinates, IEEE Trans. Power Syst. 20 No. 4 (Nov 2005), 1667-1674.10.1109/TPWRS.2005.857388Search in Google Scholar

IBA, K.—SUZUKI, H.—EGAWA, M.—WATANABE, T.: A Method for Finding a Pair of Multiple Load Flow Solutions in Bulk Power Systems, IEEE Trans. Power Syst. 5 No. 2 (May 1990), 582-591.10.1109/59.54569Search in Google Scholar

OVERBYE, T. J.—KLUMP, R. P.: Effective Calculation of Power System Low-Voltage Solutions, IEEE Trans. Power Syst. 11 No. 1 (Feb 1996), 75-82.10.1109/59.485988Search in Google Scholar

OVERBYE, T. J.: A Power Flow Measure for Unsolvable Cases, IEEE Trans Power Syst. 9 No. 3 (Aug 1994), 1359-1365.10.1109/59.336130Search in Google Scholar

AJJARAPU, V.—CHRISTY, C.: The Continuation Power Flow: A Tool for Steady State Voltage Stability Analysis, IEEE Trans. Power Syst. 7 No. 1 (Feb 1992), 416-423.10.1109/59.141737Search in Google Scholar

MILANO, F.: Continuous Newton's Method for Power Flow Analysis, IEEE Trans. Power Syst. 24 No. 1 (Feb 2009), 50-57.10.1109/TPWRS.2008.2004820Search in Google Scholar

AVALOS, R. J.—CAÑIZARES, C. A.—MILANO, F.—CONEJO, A.: Equivalency of Continuation and Optimization Methods to Determine Saddle-Node and Limit Induced Bifurcations in Power Systems, IEEE Trans. Power Cir. Syst. 56 No. 1 (2009), 210-223.Search in Google Scholar

de SOUZA, A. Z.—CAÑIZARES, C. A.—QUINTANA, V. H.: New Techniques to Speed Up Voltage Collapse Computations Using Tangent Vector, IEEE Trans. Power Syst. 12 No. 3 (Aug 1997), 1380-1387.10.1109/59.630485Search in Google Scholar

KEYHANI, A.—ABUR, A.—HAO, S.: Evaluation of Power Flow Techniques for Personal Computers, IEEE Trans. Power Syst. 4 No. 2 (May 1989), 817-826.10.1109/59.193857Search in Google Scholar

VENIKOV, V. A.—STROEV, V. A.—IDELCHICK, V. I.—TARASOV, V. I.: Estimation of Electrical Power-System Steady State Stability, IEEE Trans. Power App. Syst. 94 No. 3 (1975), 1034-1041.10.1109/T-PAS.1975.31937Search in Google Scholar

SACHDEV, M. S.—MEDICHERLA, T. K. P.: A Second Order Load Flow Technique, IEEE Trans. Power App. Syst. 96 No. 1 (Feb 1977), 189-197.10.1109/T-PAS.1977.32323Search in Google Scholar

LI, S. H.—CHIANG, H. D.: Continuation Power Flow With Nonlinear Power Injection Variations: A Piecewise Linear Approximation, IEEE Trans. Power Syst. 23 No. 4 (Nov 2008), 1637-1643.10.1109/TPWRS.2008.2002294Search in Google Scholar

WILSON LONG, R.: Inherent Constraints Control Convergence: A New Method in the Long Look at Load Flow, IEEE Trans. Power App. Syst. 88 No. 4 (Jan 1969), 22-27.10.1109/TPAS.1969.292333Search in Google Scholar

BIJWE, P. R.—KELAPURE, S. M.: Nondivergent Fast Power Flow Methods, IEEE Trans. Power Syst. 18 No. 1 (May 2003), 633-638.10.1109/TPWRS.2003.810905Search in Google Scholar

SASSON, A. M.: Nonlinear Programming Solutions for Load-Flow, Minimum Loss, and Economic Dispatching Problems, IEEE Trans. Power App. Syst. 88 No. 4 (Apr 1969), 399-409.10.1109/TPAS.1969.292460Search in Google Scholar

HUBBI, W.: The Mismatch Theorem and Second-Order Load-Flow Algorithms, IEE Proc. 132 No. 4 (July 1985), 189-194.10.1049/ip-c.1985.0033Search in Google Scholar

WAMSER, R. J.—SLUTSKER, I. W.: Power Flow Solution By Newton-Raphson Method In Transient Stability Studies, IEEE Trans. Power App. Syst. 103 No. 8 (Aug 1984), 2299-2307.10.1109/TPAS.1984.318546Search in Google Scholar

RIVAS. R. LAND ULLOD. C. L.: Automatic Blackout Recovery through a Deterministic Load Flow, The International Conference on Power Engineering Society Transmission and Distribution, IEEE 2006 - Venezuela.10.1109/TDCLA.2006.311506Search in Google Scholar

STOTT, B.—MARINHO, J. L.: Linear Programming for PowerSystem Network Security Applications, IEEE Trans. Power Syst. 98 No. 4 (May/June 1979), 837-848.10.1109/TPAS.1979.319296Search in Google Scholar

CHEN, Y.—SHEN, C.: A Jacobian-Free Mewton-GMRES(m) Method with Adaptive Preconditioner and its Application for Power Flow Calculations, IEEE Trans. Power Syst. 21 No. 3 (Aug 2006), 1096-1103.10.1109/TPWRS.2006.876696Search in Google Scholar

TAMURA, Y.—MORI, H.—IWAMOTO, S.: Relationship between Voltage Instability and Multiple Load Flow Solutions in Electric Power Systems, IEEE Trans. Power App. Syst. 102 No. 5 (May 1983), 1115-1125.10.1109/TPAS.1983.318052Search in Google Scholar

SASSON, A. M.—TREVINO. C.—ABOYTES. F.: Improved Newton's Load Flow Through a Minimization Technique, IEEE Trans. Power App. Sys. 90 No. 3 (Feb 1971), 1974-1981.10.1109/TPAS.1971.292992Search in Google Scholar

ALVES, D. A.—da SILVA, L. C. P.—CASTRO, C. A.—da COSTA, V. F.: Continuation Fast Decoupled Power Flow with Secant Predictor, IEEE Trans. Power Syst. 16 No. 3 (Aug 2003), 1078-1085.10.1109/TPWRS.2003.814892Search in Google Scholar

SEMLYEN, A.—de LE'ON, F.: Quasi-Newton Power Flow Using Partial Jacobian Updates, IEEE Trans. Power Syst. 16 No. 3 (Aug 2001), 332-339.10.1109/59.932265Search in Google Scholar

JABR, R. A.: A Conic Quadratic Format for the Load Flow Equations of Meshed Networks, IEEE Trans. Power Syst. 22 No. 4 (Nov 2007), 2285-2286.10.1109/TPWRS.2007.907590Search in Google Scholar

WANG, Y.—da SILVA, L. C. P.—WILSUN XU: Investigation of the Relationship between Ill-Conditioned Power Flow and Voltage Collapse, IEEE Power Engineering Review 20 No. 4 (July 2000), 43-45.10.1109/39.850434Search in Google Scholar

YORINO, N.—HUA-QIANG LI SASAKI, H.: A Predictor/Corrector Scheme for Obtaining Q-Limit Points for Power Flow Studies, IEEE Trans. Power Syst. 20 No. 2 (Feb 2005), 130-137.10.1109/TPWRS.2004.831696Search in Google Scholar

DIMITROVSKI, A.—TOMSOVIC, K.: Boundary Load Flow Solutions, IEEE Trans. Power Syst. 19 No. 1 (Feb 2004), 348-355.10.1109/TPWRS.2003.821469Search in Google Scholar

SODE-YOME, A.—MITHULANANTHAN, N.—LEE, K. Y.: A Maximum Loading Margin Method for Static Voltage Stability in Power Systems, IEEE Trans. Power Syst. 21 No. 3 (May 2004), 799-808.10.1109/TPWRS.2006.873125Search in Google Scholar

GUEDES, R. B. L.—ALBERTO, L. F. C.—BRETAS, N. G.: Power System Low-Voltage Solutions using an Auxiliary Gradient System for Voltage Collapse Purposes, IEEE Trans. Power Syst. 20 No. 3 (Aug 2005), 1528-1537.10.1109/TPWRS.2005.852069Search in Google Scholar

NOR, K. M.—MOKHLIS, H.—GANI, T. A.: Reusability Techniques in Load Flow Analysis Computer Program, IEEE Trans. Power Syst. 19 No. 4 (Nov 2004), 1754-1762.10.1109/TPWRS.2004.835630Search in Google Scholar

HASANPOUR, S.—GHAZI, R.—JAVIDI, M. H.: A New Method for Fast Computation of Maximum Loading Margin Utilizing the Weak Area of the System, International Review of Electrical Engineering (IREE) 4 No. 1 (Feb 2009), 139-145.Search in Google Scholar

ZHOU, E. Z.: Object-Oriented Programming, C++ and Power System Simulation, IEEE Trans. Power Syst. 11 No.1 (Feb 1996), 206-215.10.1109/59.486097Search in Google Scholar

ISSN:
1335-3632
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other