Multi-Period Generation Scheduling Optimization Model and its Application

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Abstract:

Generation scheduling depended on accurate boundary conditions. Before the actual implementation, optimization result of day-ahead schedule was needed to be rolling corrected by two periods of intraday scheduling and real-time scheduling. It was key problem to establish optimization models which adapt to different dispatch period and coordinate different period generation scheduling for to achieving the best optimization results. This paper first discussed coordination mode of different period generation scheduling; Then, the mathematical models were established for day-ahead scheduling, intraday scheduling and real-time scheduling; Day-ahead scheduling and intraday scheduling including SCUC and SCED, intraday scheduling including SCED, and optimization goals were the minimum total cost of generation. In addition to boundary conditions, the difference between day-ahead scheduling and intraday scheduling model was that the optimal range from all units into AGC units; In real-time operation stage, the optimized objective was the minimum deviation between real-time schedule and intraday schedule for AGC units. Through practical application in a provincial, it proves that the proposed model is correct and effective.

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Periodical:

Advanced Materials Research (Volumes 614-615)

Pages:

850-856

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Online since:

December 2012

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] ZHANG Zhigang, XIA Qing: Architecture and Key Technologies for Generation Scheduling of Smart Grid. Power System Technology Vol. 20(2009), pp.1-8.

Google Scholar

[2] CHEN Zhixu, LI Dan and LIANG Ji: Intraday Generation Plan and Real time Dispatch System of North China Grid. Automation of Electric Power Systems Vol. 19(2011), pp.54-57.

Google Scholar

[3] CHEN Zhixu, LI Dan and ZHANG Jing: Function design for North China power grid security constrained convention dispatch optimization system. Automation of Electric Power Systems Vol. 24(2008), pp.43-47.

Google Scholar

[4] Sun Yuanzhang, Wu Jun and Li Guojie: Influence research of wind power generation on power systems. Power System Technology Vol. 20(2007), pp.55-62,70.

Google Scholar

[5] Chen Haiyan, Chen Jinfu and Duan Xianzhong: Fuzzy modeling and optimization algorithm on dynamic economic dispatch in wind power integrated system. Automation of Electric Power Systems Vol. 2(2006), pp.22-26.

DOI: 10.1109/tdc.2005.1546979

Google Scholar

[6] CHEN Zhixu, XIE Kai and ZHANG Jing: Optimal model and algorithm for day-ahead generation scheduling of transmission grid security constrained convention dispatch. Automation of Electric Power Systems Vol. 1(2009), pp.10-13.

Google Scholar