DocumentCode
1144796
Title
Optimal reliable operation of hydrothermal power systems with random unit outages
Author
Amjady, Nima ; Farrokhzad, Davood ; Modarres, Mohammad
Author_Institution
Dept. of Eng., Semnan Univ., Iran
Volume
18
Issue
1
fYear
2003
fDate
2/1/2003 12:00:00 AM
Firstpage
279
Lastpage
287
Abstract
A new model for long-term operation of hydrothermal power systems is introduced and a method for obtaining an optimal solution is also developed. The authors assume that reservoir inflows and energy demand are stochastic and all units are exposed to random outages. The objective is to minimize the total cost of the system as well as the expected interruption cost of energy (EIC) during a given planning horizon. This goal is reached through determination of hydroplant discharges, thermal units energy output, and the system reliability level simultaneously. In fact, the authors integrate long-term hydrothermal system operation planning and system reliability determination in a unified model. Since the resulting model is a large-scale stochastic nonlinear programming, an algorithm is especially developed to solve it. This algorithm that includes decomposition technique, Lagrangian relaxation, and nonlinear and dynamic programming finds an optimal solution within three stages. To test the method, it is implemented for the Khuzestan power system in Iran and the results are analyzed.
Keywords
costing; dynamic programming; hydroelectric power stations; hydrothermal power systems; nonlinear programming; power system economics; power system faults; power system reliability; thermal power stations; Iran; Lagrangian relaxation; decomposition technique; dynamic programming; energy demand; expected interruption cost; hydroplant discharges; hydrothermal power systems; large-scale stochastic nonlinear programming; nonlinear programming; optimal reliable operation; planning horizon; random unit outages; reservoir inflows; system reliability level; thermal units energy output; Costs; Dynamic programming; Lagrangian functions; Large-scale systems; Power system analysis computing; Power system modeling; Power system reliability; Reservoirs; Stochastic processes; System testing;
fLanguage
English
Journal_Title
Power Systems, IEEE Transactions on
Publisher
ieee
ISSN
0885-8950
Type
jour
DOI
10.1109/TPWRS.2002.807070
Filename
1178809
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