• DocumentCode
    1719245
  • Title

    Security Constrained Integrated Unit Commitment Using Quadratic Programming

  • Author

    Sawa, Toshiyuki ; Sato, Yasuo ; Tsurugai, Mitsuo ; Onishi, Tsukasa

  • Author_Institution
    Hitachi Res. Lab., Hitachi, Ltd., Hitachi
  • fYear
    2007
  • Firstpage
    1858
  • Lastpage
    1863
  • Abstract
    We have developed an innovative power generation scheduling method using quadratic programming (QP). The advantage of using our method is that it simultaneously solves unit commitment and economic load dispatch. We relax the binary variables of the unit state into continuous variables to apply QP to this problem. We also add the penalty term to converge the value of those variables to 0 or 1 to the objective function; the sum of fuel costs and start-up costs. This penalty term depends on per-unit fuel cost. The possibility of its variable converging to zero increases as the cost increases. This method was applied to a test system of daily generation scheduling that consisted of 29 thermal units, two pumped-storage units, four cascaded-hydro units, and one transmission. The schedule satisfied all constraints, i.e., load-power balance, operation reserve, power flow, minimum up/down-times, and fuel consumption. This result shows that the developed method is effective.
  • Keywords
    power generation dispatch; power generation economics; power generation scheduling; quadratic programming; cascaded-hydro units; daily generation scheduling; economic load dispatch; fuel consumption; innovative power generation scheduling method; load-power balance; operation reserve; per-unit fuel cost; power flow; pumped-storage units; quadratic programming; security constrained integrated unit commitment; thermal units; Cost function; Fuel economy; Job shop scheduling; Power generation dispatch; Power generation economics; Power system management; Power transmission lines; Quadratic programming; Security; System testing; Network constraint; Power generation dispatch; Quadratic programming; Unit commitment;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Power Tech, 2007 IEEE Lausanne
  • Conference_Location
    Lausanne
  • Print_ISBN
    978-1-4244-2189-3
  • Electronic_ISBN
    978-1-4244-2190-9
  • Type

    conf

  • DOI
    10.1109/PCT.2007.4538600
  • Filename
    4538600