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Multi-timescale robust dispatching for coordinated automatic generation control and energy storage 被引量:4

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摘要 The increasing penetration of renewable energy into power grids is reducing the regulation capacity of automatic generation control(AGC).Thus,there is an urgent demand to coordinate AGC units with active equipment such as energy storage.Current dispatch decision-making methods often ignore the intermittent effects of renewable energy.This paper proposes a two-stage robust optimization model in which energy storage is used to compensate for the intermittency of renewable energy for the dispatch of AGC units.This model exploits the rapid adjustment capability of energy storage to compensate for the slow response speed of AGC units,improve the adjustment potential,and respond to the problems of intermittent power generation from renewable energy.A column and constraint generation algorithm is used to solve the model.In an example analysis,the proposed model was more robust than a model that did not consider energy storage at eliminating the effects of intermittency while offering clear improvements in economy and efficiency.
出处 《Global Energy Interconnection》 2020年第4期355-364,共10页 全球能源互联网(英文版)
基金 supported by Theoretical study of power system synergistic dispatch National Science Foundation of China(51477091).
作者简介 Yiran Ma was born in Shandong,China,in 1996.She received a BS in Electrical Engineering from Shandong University of Science and Technology Jinan,China,in 2014.She is currently working toward an MS in Electrical Engineering from Shandong University.Her research interests include energy storage and power system operation and control,yun86313@163.com;Xueshan Han received a BE and MS in Electrical Engineering from Northeast Dianli University,Jilin,China,in 1984 and 1989,respectively,and a PhD in Electrical Engineering from Harbin Insti tute of Technology,Harbin,China,He is currently a Full Professor of Electrical Engineering with Shandong University,Jinan,China.His research interests include power system operation and control and power system reliability assessment,xshan@sdu.edu.cn;Ming Yang received a BE and PhD in Electrical Engineering from Shandong University,Jinan,China,in 2003 and 2009,respectively.He was an exchange PhD student at the Energy System Research Center,University of Texas at Arlington,TX,USA,from October 2006 to October 2007.Currently,he is a Professor with Shandong University.His research interests include power system optimal operation and control,myang@sdu.edu.cn;Wei-Jen Lee(Fellow,IEEE)received the B.S.and M.S.degrees from National Taiwan University,Taipei,Taiwan,and the Ph.D.degree from the University of Texas,Arlington,TX,USA,in1978,1980,and 1985,respectively,all in electrical engineering.He is currently a Professor with the Department of Electrical Engineering and the Director of the Energy Systems Research Center.Since 2008,he has been the Project Manager for IEEE/NFPA Arc Flash Research Project.His research interests include arc flash and electrical safety,utility deregulation,renewable energy,smart grid,microgrid,load forecasting,power quality,distribution automation and demand side management,power systems analysis,online real time equipment diagnostic and prognostic system,and microcomputer based instrumentation for power systems monitoring,measurement,control,and protection.Dr.Lee is a registered Professional Engineer in the State of Texas,wlee@uta.edu.
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  • 1韩学山,柳焯.考虑发电机组输出功率速度限制的最优机组组合[J].电网技术,1994,18(6):11-16. 被引量:88
  • 2高亚静,周明,李庚银,李睿,肖利民.基于马尔可夫链和故障枚举法的可用输电能力计算[J].中国电机工程学报,2006,26(19):41-46. 被引量:31
  • 3李文沅.电力系统风险评估:模型、方法和应用[M].北京:科学出版社,2006:35-56.
  • 4CARPENTIER P, GOHEN G, CULIOLI J C, et al. Stoc/nastic optimization of unit commitment: a new decomposition framework[J]. IEEE Trans on Power Systems, 1996, 11(2): 1067 -1073.
  • 5TAKRIT1 S, BIRGE J R, LONG E. A stochastic modet for the unit commitment problem[J]. IEEE Trans on Power Systems, 1996, 11(3): 1497 -1508.
  • 6WU Lei, SHAHIDEHPOUR M, LI Tao. Stochastic security- constrained unit commitment [J]. IEEE Trans on Power Systems, 2007, 22(2): 800- 811.
  • 7BOUFFARD F, GALIANA F D. Stochastic security for operations planning with significant wind power generation[J]. IEEE Trans on Power Systems, 2008, 23(2): 306 -316.
  • 8BOTTERUD A, ZHOU Z, WANG J, et al. Unit commitment and operating reserves with probabilistic wind power forecasts [C]// IEEE Trondheim PowerTech, June 19-23, 2011, Trondheim, Norway: 7p.
  • 9YUAN Y, LI Q, WANG W. Optimal operation strategy of energy storage unit in wind power integration based on stochastic programming [J].IET Renewable Power Generation, 2011, 5(2): 194-201.
  • 10DANESHI A, KHEDERZADEH M, SADRMOMTAZI N, etal. Integration of wind power and energy storage in SCUC problem[C]// World Non-grid connected Wind Power and Energy Conference ( WNWEC ), November 5 7, 2010, Nanjing, China: 8p.

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