DocumentCode
1390852
Title
Optimal Generator Start-Up Strategy for Bulk Power System Restoration
Author
Sun, Wei ; Liu, Chen-Ching ; Zhang, Li
Author_Institution
Iowa State Univ., Ames, IA, USA
Volume
26
Issue
3
fYear
2011
Firstpage
1357
Lastpage
1366
Abstract
During system restoration, it is critical to utilize the available black-start (BS) units to provide cranking power to non-black-start (NBS) units in such a way that the overall system generation capability will be maximized. The corresponding optimization problem is combinatorial with complex practical constraints that can vary with time. This paper provides a new formulation of generator start-up sequencing as a mixed integer linear programming (MILP) problem. The linear formulation leads to an optimal solution to this important problem that clearly outperforms heuristic or enumerative techniques in quality of solutions or computational speed. The proposed generator start-up strategy is intended to provide an initial starting sequence of all BS or NBS units. The method can provide updates on the system MW generation capability as the restoration process progresses. The IEEE 39-Bus system, American Electric Power (AEP), and Entergy test cases are used for validation of the generation capability optimization. Simulation results demonstrate that the proposed MILP-based generator start-up sequencing algorithm is highly efficient.
Keywords
electric generators; integer programming; linear programming; power system restoration; AEP; IEEE 39-bus system; MILP problem; MILP-based generator start-up sequencing algorithm; MW generation; NBS units; black-start units; bulk power system restoration; enumerative techniques; heuristic techniques; linear formulation; mixed integer linear programming problem; nonblack-start units; optimal generator start-up strategy; optimization problem; Availability; Generators; NIST; Optimization; Power system restoration; Sun; Generation capability; global optimization; mixed integer linear programming; power system restoration;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2010.2089646
Filename
5648472
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