DocumentCode :
635332
Title :
A robust hydro-thermal scheduling problem for a system integrated with wind resource
Author :
Yuanchao Yang ; Qiaozhu Zhai ; Xiaohong Guan
Author_Institution :
MOE KLlNNS Lab., Xi´an Jiaotong Univ., Xi´an, China
fYear :
2013
fDate :
27-31 May 2013
Firstpage :
1
Lastpage :
7
Abstract :
Daily hydro-thermal scheduling (HTS) problem, one of the most critical tasks in electric power system operations, faces new challenges as the system uncertainty increases dramatically due to the integration of time-varying resources, such as wind. To effectively address these challenges, we propose the formulation of the solution of a generalized HTS problem for a system integrated with wind resources. Given the pre-specified wind nodal power output information by intervals, the HTS problem solution is robust against all wind uncertainty. The generalized HTS problem integrates the detailed statement of hydroelectric resource, especially in the form of stored water in the reservoirs which couples the decision makings at consecutive time periods. Thus, the system operator can give a more precise scheduling result from the hydro resources for coping with the uncertainty caused by wind. The description of the problem is comprehensive, providing information on important operating considerations and constraints which need to be modeled in practice. The problem is modeled as a two-level mixed integer optimization problem and we develop a computationally tractable method for practical power systems. Numerical testing results based on the Northwest China Grid data back our conclusion effectively.
Keywords :
decision making; hydroelectric power stations; hydrothermal power systems; integer programming; power generation scheduling; reservoirs; thermal power stations; wind power plants; Northwest China Grid; computationally tractable method; decision making; electric power system operation; generalized HTS problem; hydroelectric resource; hydrothermal scheduling problem; numerical testing; pre-specified wind nodal power output information; reservoir; time-varying resource; two-level mixed integer optimization problem; water storage; wind resource; Computational modeling; Load modeling; Wind power generation; hydro-thermal scheduling; robust optimization; wind generation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
European Energy Market (EEM), 2013 10th International Conference on the
Conference_Location :
Stockholm
Type :
conf
DOI :
10.1109/EEM.2013.6607321
Filename :
6607321
Link To Document :
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