Title :
Optimal Scheduling of Large Hydrothermal Power Systems
Author :
Shaw, John J. ; Gendron, Robert F. ; Bertsekas, Dimitri P.
Author_Institution :
Alphatech, Inc., Burlington, MA
Abstract :
In this paper we present a new algorithm to find the optimal unit commitment and economic dispatch (UC/D) for a large hydrothermal power system. Mathematically, this is a large nonlinear, mixed integer optimization problem involving over 16,800 integer variables for a system having 100 thermal units with a 1-week scheduling horizon. We use a dual programming approach to solve a separate optimal control problem for each thermal unit and for each set of coupled hydro units. The algorithm has been tested on a 100 thermal unit/6 hydro unit system having a 168-hour scheduling period, and will find solutions that are within 0.1 to 0.25 percent of the optimal dual cost. We report computational results for a system modeled after the New York Power Pool.
Keywords :
Cost function; Optimal control; Optimal scheduling; Power generation economics; Power system economics; Power system modeling; Power systems; Processor scheduling; Scheduling algorithm; System testing;
Journal_Title :
Power Engineering Review, IEEE
DOI :
10.1109/MPER.1985.5528865