DocumentCode
1764105
Title
A Chance-Constrained Unit Commitment With an
Security Criterion and Significant Wind Generation
Author
Pozo, David ; Contreras, Javier
Author_Institution
Escuela Tec. Super. de Ing. Ind., Univ. de Castilla-La Mancha, Ciudad Real, Spain
Volume
28
Issue
3
fYear
2013
fDate
Aug. 2013
Firstpage
2842
Lastpage
2851
Abstract
This paper presents a new approach for the joint energy and reserves scheduling and unit commitment with n-K reliability constraints for the day-ahead market. The proposed method includes a novel n-K criterion where demand must be met with a specified probability under any simultaneous loss of K generating units. A chance-constrained method is proposed with an α-quantile measure to determine the confidence level to meet the demand under K simultaneous contingencies. The chance-constrained optimization problem is recast as a mixed integer linear programming optimization problem. Wind and demand uncertainty are included into the model. The methodology proposed is illustrated with several case studies where the effect of increasing wind power penetration is analyzed showing the performance of our model.
Keywords
integer programming; linear programming; power generation dispatch; power generation reliability; power generation scheduling; power markets; wind power plants; α-quantile measure; chance-constrained optimization problem; chance-constrained unit commitment; day-ahead market; demand uncertainty; energy-reserve scheduling; generating unit loss; mixed integer linear programming optimization problem; n-K reliability constraint; n-K security criterion; wind generation; wind power penetration; wind uncertainty; Optimization; Probabilistic logic; Production; Security; Spinning; Stochastic processes; Wind power generation; Chance-constrained programming; conditional value at risk; stochastic security constrained unit commitment;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2012.2227841
Filename
6389739
Link To Document