期刊文献+

论电网储能自动化控制对智能电网的贡献 被引量:1

The discussion on the contribution of automatic energy storage control to smart grid
下载PDF
导出
摘要 对固体电储能装置的分散储能特性和自动控制系统进行分析,通过固体电储能装置消纳风电和其他清洁能源功能,进行调峰供暖,从成果角度进一步思考固体电储能装置自动化控制对智能电网的贡献。电网大数据调度和自动控制,能够将固体电储能装置及自动控制系统纳入智能电网系统,起到迅速平衡电网、达到调峰的目的,在智能电网发展过程中应考虑储能系统的自动化控制,以满足电网的需求。 The characteristics of decentralized energy storage and automatic control system of solid electric energy storage devices are analyzed.Through the absorption of wind power and other clean energy functions of the solid state energy storage device,the peak shaving and heating are carried out,the contribution of automatic control of solid electric energy storage devices to smart grid is further considered from the perspective of results.Big data dispatching and automatic control of power grid can integrate solid electric energy storage device and automatic control system into smart grid system,which can balance power grid rapidly and achieve peak shaving.In the development process of smart grid,automatic control of energy storage system should be considered to meet the needs of power grid.
作者 郑一昂 刘吉川 崔明思 高广洲 ZHENG Yiang;LIU Jichuan;CUI Mingsi;GAO Guangzhou(Hangzhou Qiantang Electric Engineering Co.,Ltd,Hangzhou 310000,China;Qinhuangdao Huadian Measurement&Control Equipment Co.,Ltd,Qinhuangdao 066000,China)
出处 《黑龙江电力》 CAS 2019年第3期214-219,共6页 Heilongjiang Electric Power
关键词 煤改电 智能电网 固体电储能 供热 调峰 coal to electricity smart grid solid electric energy storage heating peak shaving
  • 相关文献

参考文献4

二级参考文献29

  • 1廖胜利,程春田,蔡华祥,蔡建章,吴东平.改进的火电调峰方式[J].电力系统自动化,2006,30(1):89-93. 被引量:35
  • 2张少华,言茂松,程道平,张厚琪,陶玉华,汪琴芬.上海电网发展燃气轮机调峰的系统规划与优化[J].电网技术,1996,20(4):27-30. 被引量:1
  • 3ShiJie Cheng,YueJin Tang. High temperature SMES for improving power system stabilities[J] 2007,Science in China Series E: Technological Sciences(4):402~412
  • 4Ali Nourai, Kogan V I, Chris M Schafer. Load leveling reduces T&D line losses[J]. IEEE Transactions on Power Delivery, 2008, 23(4): 2168-2173.
  • 5Sutanto D. Power management solutions for energy management, power quality and environment using battery energy storage systems[C]. IEEE 1999 Interna- tional Conference on Power Electronics and Drive Systems, Hong Kong, 1999, 1.
  • 6Zhou Haihua, Tanmoy Bhattacharya. Composite energy storage system involving battery and ultracapacitor with dynamic energy management in microgrid applica- tions[J]. IEEE Transactions on Power Electronics, 2011, 26(3): 923-930.
  • 7Jeroen Tant, Frederik Geth, Daan Six. Multiobjective battery storage to improve PV integration in residential distribution grids[J]. IEEE Transactions on Sustainable Energy, 2013, 4(1): 182-192.
  • 8Igor Papic, Member. IEEE simulation model for dischar- ging a lead-acid battery energy storage system for load leveling[J]. IEEE Transactions on Energy Conversion, 2006, 21(2): 608-616.
  • 9Ali Nourai, Kogan V I, Chris M Schafer. Load leveling reduces T&D line losses[J]. IEEE Transactions on Power Delivery, 2008, 23(4): 2168-2173.
  • 10Oudalov A Cher kaoui R, Beguin A. Sizing and optimal operation of battery energy storage system for peak shaving application[C]. 2007 IEEE Lausanne, Power Tech., 2007: 621-625.

共引文献120

同被引文献5

引证文献1

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