• DocumentCode
    3584797
  • Title

    Optimal load frequency control in interconnected power system using PID controller based on particle swarm optimization

  • Author

    Kouba, Nour El Yakine ; Menaa, Mohamed ; Hasni, Mourad ; Boussahoua, Bouziane ; Boudour, Mohamed

  • Author_Institution
    Lab. of Electr. Ind. Syst. (LSEI), Univ. of Sci. & Technol. Houari Boumediene, Algiers, Algeria
  • fYear
    2014
  • Firstpage
    1
  • Lastpage
    8
  • Abstract
    Today load frequency control is becoming more important and significant in interconnected power system design and operation due to the complexity of power systems, changing structure, and emerging renewable energy sources. This paper presents an application of particle swarm optimization (PSO) algorithm for determining the optimal values for the proportional-integral-derivation (PID) controller for a load frequency control (LFC) of two-area interconnected power system having diverse sources of power generation. This method is compared to the traditional Ziegler-Nichols method. In order to analyze the load frequency control we propose to use a new method based on the implicit integration Trapezoidal rule and the iterative Newton-Raphson method. The two area power system is simulated for different load disturbances. The main primary objective is to suppress all the fluctuation of the system frequency and tie line power flow and the proposed method has proven to be very efficient.
  • Keywords
    Newton-Raphson method; frequency control; load flow control; particle swarm optimisation; power generation faults; power system interconnection; three-term control; PID controller; Ziegler-Nichols method; implicit integration; interconnected power system; iterative Newton-Raphson method; load disturbances; optimal load frequency control; particle swarm optimization; power flow; power generation; proportional-integral-derivation controller; renewable energy sources; trapezoidal rule; Frequency control; Generators; Iterative methods; Load modeling; Mathematical model; Particle swarm optimization; Power system stability; Load Frequency Control (LFC); PID Controller; Particle Swarm Optimization (PSO); Two-Area Control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrical Sciences and Technologies in Maghreb (CISTEM), 2014 International Conference on
  • Type

    conf

  • DOI
    10.1109/CISTEM.2014.7077013
  • Filename
    7077013