• DocumentCode
    929411
  • Title

    Value-Based Transmission Expansion Planning of Hydrothermal Systems Under Uncertainty

  • Author

    Oliveira, Gerson C. ; Binato, Silvio ; Pereira, Mario V F

  • Author_Institution
    Power Syst. Res. Inc., Rio de Janeiro
  • Volume
    22
  • Issue
    4
  • fYear
    2007
  • Firstpage
    1429
  • Lastpage
    1435
  • Abstract
    Transmission planning studies in hydrothermal systems deal with complex issues. Two include 1) the need for a robust grid that can accommodate a large number of economic dispatch patterns caused by differing hydrological conditions in the river basins and 2) the high cost of grid reinforcements due to the large distance from hydro plants to load centers and the required N-l security criterion. It is thus necessary to consider the tradeoff between supply reliability and reinforcement cost. The resulting planning problem is formulated as a large-scale mixed integer nonlinear optimization model. The objective function is to minimize the sum of investment costs and expected load-shedding costs. The constraints include linearized power flow equations, limits on circuit flows for all combinations of economic dispatch points (which capture hydrological variation), and circuit contingencies (which capture supply reliability). This paper describes a new solution scheme for this problem that is based on two techniques: 1) the extension of a binary disjunctive technique, which transforms the integer nonlinear problem into a linear one and 2) screening strategies, which allow a judicious choice of contingencies and candidate circuits. Planning studies for Brazil and Bolivia are presented and discussed.
  • Keywords
    costing; hydrothermal power systems; load flow; load shedding; power generation dispatch; power transmission economics; power transmission planning; power transmission reliability; Bolivia; Brazil; N-l security criterion; binary disjunctive technique; economic dispatch patterns; hydrothermal systems; investment costs; large-scale mixed integer nonlinear optimization model; linearized power flow equation; load-shedding cost; power grid reinforcements; supply reliability; value-based transmission expansion planning; Circuits; Cost function; Investments; Large-scale systems; Load flow; Power generation economics; Rivers; Robustness; Security; Uncertainty; Combinatorial optimization; network reliability; transmission expansion planning;
  • fLanguage
    English
  • Journal_Title
    Power Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0885-8950
  • Type

    jour

  • DOI
    10.1109/TPWRS.2007.907161
  • Filename
    4349113