• DocumentCode
    1233688
  • Title

    An Advanced IPFC Model to Reuse Newton Power Flow Codes

  • Author

    Bhowmick, Suman ; Das, Biswarup ; Kumar, Narendra

  • Author_Institution
    Dept. of Electr. Eng., Delhi Coll. of Eng., Delhi
  • Volume
    24
  • Issue
    2
  • fYear
    2009
  • fDate
    5/1/2009 12:00:00 AM
  • Firstpage
    525
  • Lastpage
    532
  • Abstract
    Complexities of computer program codes for Newton-Raphson load flow (NRLF) analysis are usually enhanced during power flow modeling of an interline power flow controller (IPFC). This is due to the fact that the contributions of the series converters of the IPFC are needed to be accounted for while computing bus power injections and Jacobian matrix elements. Also, the IPFC real power injection term along with its associated Jacobian matrix call for new codes to be written. In this paper an advanced IPFC model is proposed to address this issue, wherein an existing power system installed with IPFC(s) is transformed into an augmented equivalent network without any IPFC. To obtain the solution of the original network containing IPFC(s), the augmented network can easily be solved by reusing the existing NRLF codes, as this network is now devoid of any IPFC. Consequently, the complexities of the computer program codes are reduced substantially. Various practical device limit constraints of the IPFC can also be taken into account by the proposed model.
  • Keywords
    Jacobian matrices; flexible AC transmission systems; load flow control; power system analysis computing; Jacobian matrix elements; Newton-Raphson load flow analysis; computer program codes; flexible AC transmission systems; interline power flow controller; power flow modeling; real power injection; Flexible ac transmission systems (FACTS); Newton power flow; interline power flow controller (IPFC);
  • fLanguage
    English
  • Journal_Title
    Power Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8950
  • Type

    jour

  • DOI
    10.1109/TPWRS.2009.2016643
  • Filename
    4813191