DocumentCode
8936
Title
Outer Approximation and Outer-Inner Approximation Approaches for Unit Commitment Problem
Author
Daolan Han ; Jinbao Jian ; Linfeng Yang
Author_Institution
Coll. of Electr. Eng., Guangxi Univ., Nanning, China
Volume
29
Issue
2
fYear
2014
fDate
Mar-14
Firstpage
505
Lastpage
513
Abstract
This paper proposes a new separable model for the unit commitment (UC) problem and three deterministic global optimization methods for it ensuring convergence to the global optimum within a desired tolerance. By decomposing a multivariate function into several univariate functions, a tighter outer approximation methodology that can be used to improve the outer approximations of several classical convex programming techniques is presented. Based on the idea of the outer approximation (OA) method and the proposed separable model, an outer-inner approximation (OIA) approach is also presented to solve this new formulation of UC problem. In this OIA approach, the UC problem is decomposed into a tighter outer approximation subproblem and an inner approximation subproblem, where the former leads to a better lower bound than the OA method, and the later provides a better upper bound. The simulation results for systems of up to 100 units with 24 h are compared with those of previously published methods, which show that the OIA approach is very promising due to the excellent performance. The proposed approaches are also applied to the large-scale systems of up to 1000 units with 24 h, and systems of up to 100 units with 96 h and 168 h.
Keywords
approximation theory; convergence; convex programming; power generation dispatch; OA method; OIA approach; UC problem; convex programming technique; multivariate function; outer approximation method; outer-inner approximation approach; unit commitment problem; univariate function; Inner approximation; mixed-integer linear programming; outer approximation; separable model; unit commitment;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2013.2253136
Filename
6494361
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