DocumentCode :
1716817
Title :
A Two-Level Method for Solving Power Generating Unit Commitment Problems
Author :
Georgopoulou, Hariklia A. ; Giannakoglou, Kyriakos C.
Author_Institution :
Sch. of Mech. Eng., Nat. Tech. Univ. of Athens, Athens
fYear :
2007
Firstpage :
1326
Lastpage :
1331
Abstract :
This paper is concerned with the solution of unit commitment problems by means of a two-level evolutionary algorithm (EA), handling the encoded operational states of units. The EA is assisted by the augmented Lagrange relaxation method to compute the optimal units´ loading, for each candidate configuration. Emphasis is laid on the reduction of the CPU cost of the proposed method and, for this purpose, a two- level EA has been devised. At the first-preparatory level, the time units (hours) are grouped, based on heuristics. This gives rise to a coarse-grained optimization problem with a reduced number of unknowns which can readily be solved using EAs, without taking into consideration constraints related to units´ start-up and shutdown. The so-obtained, sub-optimal and, likely, infeasible solution is then processed by the second level for further refinement. At this level, instead of optimizing the unit commitment over the whole period of time, a small number of consecutive sub-periods are formed and the corresponding optimization sub-problems are solved iteratively. For each sub- problem, an EA coupled with chromosome repairing and cost function penalization to account for inconsistencies between the current sub-problem solution and those computed at the adjacent sub-intervals.
Keywords :
evolutionary computation; optimisation; power generation scheduling; relaxation theory; augmented Lagrange relaxation method; chromosome repairing; coarse-grained optimization; cost function penalization; evolutionary algorithm; power generating unit commitment problems; Biological cells; Constraint optimization; Cost function; Dynamic programming; Evolutionary computation; Lagrangian functions; Power demand; Power generation; Thermal engineering; Turbomachinery;
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.2007.4538508
Filename :
4538508
Link To Document :
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