全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

电池储能电站静态功能的研究

, PP. 242-248

Keywords: 电池储能电站,钠硫电池,静态功能,削峰填谷,BESS配置数量

Full-Text   Cite this paper   Add to My Lib

Abstract:

针对电力系统中蓄电池储能电站的静态功能(即削峰填谷),以钠硫电池为例建立了体现电池储能电站特点和实际运行情况的储能电站静态功能的模型,同时提出了两种充放电策略,结合电力系统的可靠性指标(EENS,HLOLE)量化并分析比较了电池储能电站的静态功能效果,算例证明模型合理有效;还讨论了系统中基于BESS功能性的最佳BESS配置数量问题。

References

[1]  Even A, Neyens J, Demouselle A. Peak shaving with batteries[C]. 12th International Conference on Electricity Distribution, Birmingham, UK, 1993.
[2]  David Miller. Electric transmission texas signs contract for largest utility-scale battery in the U. S[N]. Trasmission & Ditribution World, September 11st 2009.
[3]  Tamyurek B, Nichols D K, Demirci O.The NAS battery: a multi-function storage system energy[C]. IEEE Power Engineering Society General Meeting, Toronto, Canada, 2003.
[4]  Roberts B P. Sodium-sulfur (NaS) battteries for utility energy storage applications[C]. Power and Energy Society General Meeting-Conversion and Delivery of Electrical Energy in the 21st Century, Pittsburgh, PA, 2008: 1-2.
[5]  Testa A, De Caro S, Scimone T. Analysis of a VRB energy storage system for a tidal turbine generator[C]. 13th European Conference on Power Electronics and Applications, Barcelona, 2008: 1-10.
[6]  Barote L, Marinescu C, Georgescu M. VRB modeling for storage in stand-alone wind energy systems[C]. IEEE Bucharest Power Tech, Bucharest, 2009: 1-6.
[7]  Ding Ming, Luo Chutian. Calculation of the reliability indices for operation reserve[J]. Proceedings of the CSEE, 1991, 3 (11): 51-58.
[8]  丁明. 蓄能电站对电力系统可靠性的影响[J]. 水能技术经济, 1994, 6(2): 74-79.
[9]  Ding Ming. The effect of storage plant on the power system's reliability[J]. Technology and Economy of Water Power, 1994, 6(9): 74-79.
[10]  Ding Ming, Liu Youxiang. The comprehensive evaluation of the static and dynamic benefits of storage plant[J]. Automation of Electric Power Systems, 1994, 18(9): 30-35.
[11]  Eckroad S. Assessment of advanced batteries for energy storage applications in deregulated electric utilities, final report[R]. Product ID: TR-111162, Electric Power Research Institute, 2006.
[12]  Mears L, Gotschall H, Kamath H. EPRI-DOE handbook of energy storage for transmission and distribution applications[R]. Product ID: 1001834, Electric Power Research Institute, 2004.
[13]  Gene Wolf, Rick Bush. Utilities bulk up on energy storage[N]. Trasmission & Ditribution World, August 1st 2009.
[14]  David Miller. AEP to deploy additional large-scale batteries on distribution grid[N]. Trasmission & Ditribution World, October 1st 2007.
[15]  Vollkommer H T, Mandeville J D, Nichols D K, et al. Field trial of AEP sodium-sulfur(NAS) battery demonstration project[R]. Product ID: 1001835, Electric Power Research Institute, 2003.
[16]  Schoenung S M. Characteristics and technologies for Long-vs. short-term energy storage[R]. Sandia National Laboratories, California, USA, July 2007, SAND2001-0765.
[17]  丁明, 罗初田. 运行备用可靠性指标计算[J]. 中国电机工程学报, 1991, 3 (11) : 51-58.
[18]  丁明, 徐先勇. 系统期望发电量和燃料成本的不确定分析[J]. 中国电机工程学报, 1991, 6(11): 50-57.
[19]  Ding Ming, Xu Xianyong. Uncertainty analysis for expected generating energy and fuel cost of power system[J]. Proceedings of the CSEE, 1991, 6(11): 50-57.
[20]  Ding Ming. The static benefits of storage plant[C]. International Conference on Modelling and Simulation and Control, Chengdu, China, 1993.
[21]  丁明, 刘友翔. 蓄能电站静动态综合效益评估[J]. 电力系统自动化, 1994, 18(9): 30-35.
[22]  杨莳百. 文献发电系统可靠性分析原理和方法[M]. 北京: 水利水电出版社, 1985.
[23]  郭永基. 可靠性工程原理[M]. 北京: 清华大学出版社, 1983.
[24]  電気利用技術研究所, 電池・機能材料G[R]. Na-S電池電力貯蔵システムの運転研究100kW級ナトリウム硫黄電池の運転試験状況, 1997.
[25]  Reliability Test System Task Force of the Application of Probability Methods Subcommittee. IEEE reliability test system[J]. IEEE Transactions on Power Apparatus and Systems, 1979, 98(6): 2047-2054.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133