Title :
Optimal Scheduling of a Price-Taker Cascaded Reservoir System in a Pool-Based Electricity Market
Author :
Díaz, F. Javier ; Contreras, Javier ; Muñoz, José Ignacio ; Pozo, David
Author_Institution :
Fac. de Minas, Univ. Nac. de Colombia, Medellín, Colombia
fDate :
5/1/2011 12:00:00 AM
Abstract :
A mixed integer nonlinear programming (MINLP) model for scheduling of the short-term integrated operation of a series of price-taker hydroelectric plants (H-GENCO) along a cascaded reservoir system in a pool-based electricity market is presented. The objective of the H-GENCO can be either to maximize profit, taking into account technical efficiency, or to maximize technical efficiency, maintaining a profit level. In both cases, the efficiency can be accurately obtained using the “Hill diagram” supplied by turbine manufacturers. A multiple nonlinear regression analysis of the unit´s technical efficiency is estimated as a quadratic function of net head and water discharge. Several case studies of realistic dimensions are described, where results indicate that a profit-based MINLP produces better results compared to an MILP model, on the other hand, higher efficiencies and water savings are obtained in the efficiency-based model.
Keywords :
hydroelectric power stations; nonlinear equations; nonlinear programming; power generation economics; power generation scheduling; power markets; pricing; regression analysis; reservoirs; H-GENCO; Hill diagram; MINLP; efficiency-based model; mixed integer nonlinear programming; nonlinear regression analysis; optimal scheduling; pool-based electricity market; price-taker cascaded reservoir system; price-taker hydroelectric plants; quadratic function; short-term integrated operation; turbine manufacturers; water savings; Magnetic heads; Optimal scheduling; Programming; Reservoirs; Turbines; Hill diagram; hydroelectric generation; net head; technical efficiency; water discharge;
Journal_Title :
Power Systems, IEEE Transactions on
DOI :
10.1109/TPWRS.2010.2063042