DocumentCode :
3603355
Title :
Decentralized Multiarea Robust Generation Unit and Tie-Line Scheduling Under Wind Power Uncertainty
Author :
Zhigang Li ; Shahidehpour, Mohammad ; Wenchuan Wu ; Bo Zeng ; Boming Zhang ; Weiye Zheng
Author_Institution :
Dept. of Electr. Eng., Tsinghua Univ., Beijing, China
Volume :
6
Issue :
4
fYear :
2015
Firstpage :
1377
Lastpage :
1388
Abstract :
The growing interconnections of regional power systems and the large-scale integration of wind energy bring about the critical need to coordinate multiarea generation unit and tie-line scheduling (MAUTS). It is recognized that because of the limitations on private data exchange and model management, it is suitable to address the multiarea power scheduling problem in a decentralized way. In this paper, the MAUTS problem is formulated using the adaptive robust optimization (RO) scheme to account for uncertain wind energy. Our model is decomposed into regional subproblems by augmented Lagrangian decomposition (ALD), which enables a fully distributed computation within an alternating direction multiplier method framework. To address the nonconvexity issue, a tractable alternating optimization procedure (AOP) is developed to obtain high-quality solutions with finite convergence for the nonconvex mixed-integer problem. Simulations on different test systems are conducted to show the computational performance, the solution quality, and scalability of the proposed method.
Keywords :
concave programming; integer programming; power generation scheduling; power system interconnection; wind power; ALD; AOP; MAUTS; RO scheme; adaptive robust optimization scheme; alternating direction multiplier method framework; augmented Lagrangian decomposition; decentralized multiarea robust generation Unit; distributed computation; finite convergence; model management; multiarea generation unit and tie-line scheduling; multiarea power scheduling problem; nonconvex mixed integer problem; regional power systems interconnection; tractable alternating optimization procedure; wind power uncertainty; Mathematical model; Robustness; Uncertainty; Wind energy; Wind farms; Wind power generation; Multiarea power systems; network-constrained generation unit commitment; robust optimization (RO); tie-line scheduling; wind energy uncertainty;
fLanguage :
English
Journal_Title :
Sustainable Energy, IEEE Transactions on
Publisher :
ieee
ISSN :
1949-3029
Type :
jour
DOI :
10.1109/TSTE.2015.2437273
Filename :
7132785
Link To Document :
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