DocumentCode :
50750
Title :
A Decomposition-Based Practical Approach to Transient Stability-Constrained Unit Commitment
Author :
Yan Xu ; Zhao Yang Dong ; Rui Zhang ; Yusheng Xue ; Hill, David J.
Author_Institution :
Centre for Intell. Electr. Networks, Univ. of Newcastle, Newcastle, NSW, Australia
Volume :
30
Issue :
3
fYear :
2015
fDate :
May-15
Firstpage :
1455
Lastpage :
1464
Abstract :
Traditional security-constrained unit commitment (SCUC) considers only static security criteria, which may however not ensure the ability of the system to survive dynamic transition before reaching a viable operating equilibrium following a large disturbance, such as transient stability. This paper proposes a tractable mathematical model for transient stability-constrained unit commitment (TSCUC) and a practical solution approach. The problem is modeled without explicit differential-algebraic equations, reducing the problem size to one very similar to a conventional SCUC. The whole problem is decomposed into a master problem for UC and a range of subproblems for steady-state security evaluation and transient stability assessment (TSA). Additional constraints including Benders cut and so-named stabilization cut are generated for eliminating the security/stability violations. The extended equal-area criterion (EEAC) is used for fast TSA and analytically deriving the stabilization cut, wherein multiple contingencies having common instability mode can be simultaneously stabilized by one cut. The proposed approach is demonstrated on the New England 10-machine system and the IEEE 50-machine system, reporting very high computational efficiency and high-quality solutions.
Keywords :
power generation dispatch; power system security; power system transient stability; Benders cut; EEAC; IEEE 50-machine system; New England 10-machine system; TSA; TSCUC; decomposition-based practical approach; extended equal-area criterion; security violation elimination; stability violation elimination; stabilization cut; steady-state security evaluation; tractable mathematical model; transient stability assessment; transient stability-constrained unit commitment; Numerical stability; Power system stability; Security; Stability criteria; Transient analysis; Benders decomposition; extended equal-area criterion; mixed-integer programming; transient stability-constrained unit commitment;
fLanguage :
English
Journal_Title :
Power Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8950
Type :
jour
DOI :
10.1109/TPWRS.2014.2350476
Filename :
6888529
Link To Document :
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