• DocumentCode
    3118672
  • Title

    Novel dynamic representation and control of power networks embedded with FACTS devices

  • Author

    Mehraeen, S. ; Jagannathan, S. ; Crow, M.L.

  • Author_Institution
    Dept. of Electr. & Comput. Eng., Missouri Univ. of Sci. & Technol., Rolla, MO
  • fYear
    2008
  • fDate
    12-15 Oct. 2008
  • Firstpage
    3171
  • Lastpage
    3176
  • Abstract
    FACTS devices have been shown to be powerful in damping power system oscillations caused by faults; however, in the multi machine control using FACTS, the control problem involves solving differential-algebraic equations of a power network which renders the available control schemes ineffective due to heuristic design and lack of know how to incorporate FACTS into the network. A method to generate nonlinear dynamic representation of a power system consisting of differential equations alone with universal power flow controller (UPFC) is introduced since differential equations are typically preferred for controller development. Subsequently, backstepping methodology is utilized to reduce the generator oscillations by using a FACTS device after a fault has occurred. Finally, we use neural networks to approximate the nonlinear network dynamics for controller design. The net result is a representation that could be potentially utilized for studying the placement and number of FACTS devices as well as to design a better control scheme for FACTS given a power network. Simulation results justify theoretical conjectures.
  • Keywords
    damping; embedded systems; machine control; neural nets; nonlinear control systems; power system control; backstepping methodology; controller design; damping; differential-algebraic equation; generator oscillations; heuristic design; multimachine control; neural networks; nonlinear dynamic representation; nonlinear network dynamics; power networks; power system oscillations; universal power flow controller; Control systems; Damping; Differential equations; Machine control; Nonlinear control systems; Nonlinear equations; Power system control; Power system dynamics; Power system faults; Power systems; FACTS; Neural Networks; Nonlinear Control; Power System Control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Systems, Man and Cybernetics, 2008. SMC 2008. IEEE International Conference on
  • Conference_Location
    Singapore
  • ISSN
    1062-922X
  • Print_ISBN
    978-1-4244-2383-5
  • Electronic_ISBN
    1062-922X
  • Type

    conf

  • DOI
    10.1109/ICSMC.2008.4811783
  • Filename
    4811783