DocumentCode
1295286
Title
A Multiobjective Evolutionary Programming Algorithm and Its Applications to Power Generation Expansion Planning
Author
Meza, Jose L Ceciliano ; Yildirim, Mehmet Bayram ; Masud, Abu S M
Author_Institution
Inst. de Investig. Electr., Cuernavaca, Mexico
Volume
39
Issue
5
fYear
2009
Firstpage
1086
Lastpage
1096
Abstract
The generation expansion planning (GEP) problem is defined as the problem of determining WHAT, WHEN, and WHERE new generation units should be installed over a planning horizon to satisfy the expected energy demand. This paper presents a framework to determine the number of new generating units (e.g., conventional steam units, coal units, combined cycle modules, nuclear plants, gas turbines, wind farms, and geothermal and hydro units), power generation capacity for those units, number of new circuits on the network, the voltage phase angle at each node, and the amount of required imported fuel for a single-period generation expansion plan. The resulting mathematical program is a mixed-integer bilinear multiobjective GEP model. The proposed framework includes a multiobjective evolutionary programming algorithm to obtain an approximation of the Pareto front for the multiobjective optimization problem and analytical hierarchy process to select the best alternative. A Mexican power system case study is utilized to illustrate the proposed framework. Results show coherent decisions given the objectives and scenarios considered. Some sensitivity analysis is presented when considering different fuel price scenarios.
Keywords
Pareto optimisation; evolutionary computation; power generation planning; Mexican power system; Pareto front optimization; analytical hierarchy process; fuel price; mathematical program; multiobjective evolutionary programming algorithm; power generating units; power generation expansion planning; sensitivity analysis; Analytical hierarchy process (AHP); evolutionary programming; generation expansion planning (GEP); multicriteria optimization; operations research; optimization methods; power generation planning; transmission expansion planning;
fLanguage
English
Journal_Title
Systems, Man and Cybernetics, Part A: Systems and Humans, IEEE Transactions on
Publisher
ieee
ISSN
1083-4427
Type
jour
DOI
10.1109/TSMCA.2009.2025868
Filename
5200387
Link To Document