DocumentCode
2586369
Title
Stochastic optimization of interconnected multireservoir power systems
Author
Li, Chao-an ; Yan, Rui ; Zhou, Jing -Yan
Author_Institution
ESCA Corp., Bellevue, WA, USA
fYear
1989
fDate
1-5 May 1989
Firstpage
203
Lastpage
210
Abstract
A novel decomposition-coordination methodology for solving the long-term optimal scheduling of interconnected multireservoir power systems with stochastic river inflows is presented. The problem (with M reservoirs and N regional power systems) is composed of M hydro and N thermal subproblems. The optimization of the individual hydro subproblem can be solved by two-state stochastic dynamic programming taking into account the stochasticity and time series correlation of the river inflows. The thermal and hydro coordination is accomplished by successively updating dual variables so that the total average hydro and thermal generations meet the predicted system load demands. A computer program has been developed and tested for the Central China and East China Interconnected Power System with up to nine reservoirs. Numerical results show the effectiveness of the proposed method as compared to existing methods.<>
Keywords
hydroelectric power stations; power system analysis computing; power system interconnection; stochastic programming; China; computer program; decomposition-coordination; hydroelectric power; load demands; optimal scheduling; power system interconnection; stochastic dynamic programming; stochastic river inflows; Dynamic programming; Optimal scheduling; Power system dynamics; Power system interconnection; Reservoirs; Rivers; Stochastic processes; Stochastic systems; System testing; Thermal loading;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Industry Computer Application Conference, 1989. PICA '89, Conference Papers
Conference_Location
Seattle, WA, USA
Type
conf
DOI
10.1109/PICA.1989.38996
Filename
38996
Link To Document