Modeling of Multi-Functional Single Converter FACTS in Power Flow Analysis

This chapter discusses the recent developments in modeling of multi-functional single converter FACTS-devices in power flow analysis. The objectives of this chapter are:

[1]  Xiao-Ping Zhang,et al.  Modelling of the interline power flow controller and the generalised unified power flow controller in Newton power flow , 2003 .

[2]  Laszlo Gyugyi,et al.  Understanding FACTS: Concepts and Technology of Flexible AC Transmission Systems , 1999 .

[3]  Bruce Fardanesh,et al.  Multi-converter FACTS devices: the generalized unified power flow controller (GUPFC) , 2000, 2000 Power Engineering Society Summer Meeting (Cat. No.00CH37134).

[4]  H. H. Happ,et al.  Power Flow Solution by Impedance Matrix Iterative Method , 1963 .

[5]  James E. Van Ness,et al.  Elimination Methods for Load-Flow Studies , 1961, Transactions of the American Institute of Electrical Engineers. Part III: Power Apparatus and Systems.

[6]  A. Petersson,et al.  Eagle Pass back-to-back tie: a dual purpose application of voltage source converter technology , 2001, 2001 Power Engineering Society Summer Meeting. Conference Proceedings (Cat. No.01CH37262).

[7]  Albert M. Sasson,et al.  Improved Newton's Load Flow Through a Minimization Technique , 1971 .

[8]  F. Schettler,et al.  HVDC transmission systems using voltage sourced converters design and applications , 2000, 2000 Power Engineering Society Summer Meeting (Cat. No.00CH37134).

[9]  Jay P. Britton,et al.  Improved Area Interchange Control for Newton's Method Load Flows , 1969 .

[10]  Timothy J. E. Miller,et al.  Reactive Power Control In Electric Systems , 1982 .

[11]  M.S. Sachdev,et al.  A second order load flow technique , 1977, IEEE Transactions on Power Apparatus and Systems.

[12]  E. J. Stacey,et al.  UPFC-unified power flow controller: theory, modeling, and applications , 1998 .

[13]  Jay P. Britton Imporved Load Flow Performance Through a More General Equations Form , 1971 .

[14]  Xiao-Ping Zhang,et al.  Multi-control functional static synchronous compensator (STATCOM) in power system steady-state operations , 2004 .

[15]  L. Gyugyi,et al.  The unified power flow controller: a new approach to power transmission control , 1995 .

[16]  E. Handschin,et al.  Modeling of the Generalized Unified Power Flow Controller (GUPFC) in a Nonlinear Interior Point OPF , 2001, IEEE Power Engineering Review.

[17]  K. K. Sen SSSC-static synchronous series compensator: theory, modeling, and application , 1998 .

[18]  O. Alsac,et al.  Fast Decoupled Load Flow , 1974 .

[19]  A. Ekstrom,et al.  Multiterminal HVDC systems in urban areas of large cities , 1998 .

[20]  J. W. Walker,et al.  Direct solutions of sparse network equations by optimally ordered triangular factorization , 1967 .

[21]  W. Scott Meyer,et al.  Automatic Adjustment of Transformer and Phase-Shifter Taps in the Newton Power Flow , 1971 .

[22]  Brian Stott,et al.  Decoupled Newton Load Flow , 1972 .

[23]  P. Ashmole,et al.  Flexible AC transmission systems , 1995 .

[24]  B. Stott,et al.  Review of load-flow calculation methods , 1974 .

[25]  William F. Tinney,et al.  Power Flow Solution by Newton's Method , 1967 .

[26]  G. Asplund Application of HVDC Light to power system enhancement , 2000, 2000 IEEE Power Engineering Society Winter Meeting. Conference Proceedings (Cat. No.00CH37077).

[27]  J. B. Ward,et al.  Digital Computer Solution of Power-Flow Problems [includes discussion] , 1956, Transactions of the American Institute of Electrical Engineers. Part III: Power Apparatus and Systems.

[28]  Xiao-Ping Zhang,et al.  Multiterminal voltage-sourced converter-based HVDC models for power flow analysis , 2004 .

[29]  T. W. Cease,et al.  Development of a /spl plusmn/100 MVAr static condenser for voltage control of transmission systems , 1995 .

[30]  Boon-Teck Ooi,et al.  DC overvoltage control during loss of converter in multiterminal voltage-source converter-based HVDC (M-VSC-HVDC) , 2003 .

[31]  Laszlo Gyugyi,et al.  Static Synchronous Series Compensator: A Solid-State Approach to the Series Compensation of Transmission Lines , 1997 .

[32]  Y. Tamura,et al.  A Load Flow Calculation Method for Ill-Conditioned Power Systems , 1981, IEEE Transactions on Power Apparatus and Systems.