期刊文献+

包含蓄电池储能和负荷转移的微网经济运行优化 被引量:3

Economic operation optimization for micro-grid with battery storage and load transfer
下载PDF
导出
摘要 提出一种同时包含蓄电池储能和负荷转移的微网经济运行优化方法。该方法将全天24h划分为谷平峰3种时段,在谷平时段设计蓄电池充电补偿函数、放电罚函数,峰时段设计蓄电池充、放电罚函数;同时将部分负荷从峰时段转移到谷平时段。通过引导微网在不同时段合理对蓄电池进行充放电、向电网进行购售电,不仅减少了微网经济运行费用,而且对电网起到"移峰填谷"作用。利用LINGO优化软件对混合整数、非线性组合模型进行求解。结果表明,微网全天经济运行费用减少了13.4%,具有较好的经济效益。 A method of economic operation optimization for micro-grid with battery storage and load transfer is proposed,which divides the whole day into valley period,normal period and peak period,and designs battery charge compensation function and discharge penalty function at valley and normal periods and designs charge compensation and penalty function at peak period. Micro-grid is reasonably guided to charge and discharge battery,purchase and sell electricity to the main grid at different periods,which not only reduces the micro-grid economic operation cost,but also helps the "peak clipping and valley filling"of main grid. LINGO optimizing software is applied to solve the mixed-integer and nonlinear models. The result indicates with the battery charge and discharge management and load transfer,micro-grid economic operation cost throughout the day reduces by 13. 4%,which has good economic benefit.
出处 《电测与仪表》 北大核心 2015年第19期89-95,共7页 Electrical Measurement & Instrumentation
关键词 微网 蓄电池 并网 负荷转移 非线性模型 micro-grid electric batteries grid-connected load transfer nonlinear models
  • 相关文献

参考文献8

  • 1Farid Katiraei, Reza Iravani, Nikos Hatziariou et al. Microgrids Man- agement [ J ]. IEEE Power &amp ; Energy Magazine 6 ( 3 ) : 54-65.
  • 2石庆均,江全元.包含蓄电池储能的微网实时能量优化调度[J].电力自动化设备,2013,33(5):76-82. 被引量:76
  • 3吴雄,王秀丽,崔强.考虑需求侧管理的微网经济优化运行[J].西安交通大学学报,2013,47(6):90-96. 被引量:41
  • 4CHOI S J, PARK S J, et al. A Microgfid Energy Management System for Inducing Optimal. Demand Response [ C ] // IEEE International Conference on Smart Grid Communication. Piscataway, N J, USA: IEEE, 2011 : 19-24.
  • 5MOHAMED F A, KOIVO H N. System Modeling and Online Optimal Management of Microgrid Using Multi - objective Optimization[ C ]// Proceedings of International Conference on Clean Electrical Power. Caori. Italy: [ s. n. ] , 2007 : 148-153.
  • 6丁明,包敏,吴红斌.分布式供能系统的经济调度[J].电力科学与技术学报,2008,23(1):13-17. 被引量:28
  • 7D. P. Jenkins, J. Fletcher, and D. Kane, "Lifetime Prediction and Sizing of Lead-acid Batteries for Micro-generation Storage Applica- tions," lET Renew. Power Gener. , vol. 2, no. 3, pp. 191-200, Sep. 2008.
  • 8HONGXIN Y, WEI Z, LIN L, et al. Optimal Sizing Method for Stand-alone Hybrid Solar-wind System with LPSP Technology by Using Genetic Algorithm[ J ]. Solar Energy, 2008, 82 (4) : 354-367.

二级参考文献36

  • 1[7]Guan X,LuhPB,YanH.An optimization-based method forunit commitment[J].Electric Power and Energy Systems,1992,4 (1):9-17.
  • 2胡江溢,王鹤,周昭茂.电力需求侧管理的国际经验及对我国的启示[J].电网技术,2007,31(18):10-14. 被引量:56
  • 3鲁宗相,王彩霞,闵勇,周双喜,吕金祥,王云波.微电网研究综述[J].电力系统自动化,2007,31(19):100-107. 被引量:935
  • 4HATZIARGYRIOU N'ASAND H'lRAVANI R,et al.Microgrids[J].IEEE Power and Energy Magazine,2007,5(4):78-94.
  • 5KATIRAEI F,IRAVANI R,HATZIARGYRIOU N,et al.Micro-grids matiagement[J].IEEE Power and Energy Magazine,2008,6(3):54-56.
  • 6MOHAMED F A, KOI VO H N.System modelling and onlineoptimal management of microgrid using multi-objective optimiza-tion [C]//Proceedings of International Conference on Clean Elec-trical Power.Capri,Italy:[s.n.] ,2007:148-153.
  • 7SEON-JU A, SEUNG-IL M.Economic scheduling of distributedgenerators in a microgrid considering various constraints [C]//Proceedings of Power & Energy Society General Meeting.Seoul,Korea:[s.n.] ,2009:1-6.
  • 8MOHAMED F A, KOI VO H N.Online management of micro-grid with battery storage using multiobjective optimization[C]//Proceedings of International Conference on Power Engineering,Energy and Electrical Drives.Setubal, Portugal:[s.n.], 2007:231-236.
  • 9PILLER S,PERRIN MJOSSEN A.Methods for state-of-chargedetermination and their applications [J].Power Sources, 2001,96(1):113-120.
  • 10LOPES P J A,MOREIRA C L,MADUREIRA A G.Definingcontrol strategies for microgrids islanded operation [J].IEEETrans on Power Systems, 2006,21(2):916-924.

共引文献137

同被引文献28

引证文献3

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部