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...

电池储能系统的多时间尺度仿真建模研究及大规模并网特性分析

DOI: 10.13334/j.0258-8013.pcsee.2015.11.001, PP. 2635-2644

Keywords: 电池储能系统,多时间尺度,大规模并网,特性研究

Full-Text   Cite this paper   Add to My Lib

Abstract:

为研究电力系统机电暂态和中长期动态过程中储能电池对电网的影响,提出一种电池储能系统的多时间尺度仿真模型,并针对每个组成部分进行了详细建模。该模型在大型电力系统分析软件包的全过程仿真程序PSD-FDS中得到了实现,并通过算例验证了模型的有效性,为储能电池系统的并网研究提供了仿真手段。在此基础上,该文对电池储能系统展开了不同时间尺度下的特性分析,研究了其机电暂态特性及中长期动态特性,以及电池储能系统的接入对电网的影响。仿真显示电池储能系统对电网的稳定性有改善作用,且可以有效地平抑新能源发电的功率波动。

References

[1]  肖创英,汪宁渤,陟晶,等.甘肃酒泉风电出力特性分析[J].电力系统自动化,2010,34(17):64-67. Xiao Chuangying,Wang Ningbo,Zhi Jing,et al.Power characteristics of Jiuquan wind power base[J].Automation of Electric Power Systems,2010,34(17):64-67(in Chinese).
[2]  张宏宇,印永华,申洪,等.大规模风电接入后的系统调峰充裕性评估[J].中国电机工程学报,2011,31(22):26-31. Zhang Hongyu,Yin Yonghua,Shen Hong,et al.Peak-load regulating adequacy evaluation associated with large-scale wind power integration[J].Proceedings of the CSEE,2011,31(22):26-31(in Chinese).
[3]  Ribeiro P,Lohnson B,Crow M,et al.Energy storage systems for advanced power applications[J].Proceedings of IEEE,2001,89(12):1744-1756.
[4]  李碧辉,申洪,汤涌,等.风光储联合发电系统储能容量对有功功率的影响及评价指标[J].电网技术,2011,35(4):123-128. Li Bihui,Shen Hong,Tang Yong,et al.Impacts of energy storage capacity configuration of HPWS to active power characteristics and its relevant indices[J].Power System Technology,2011,35(4):123-128(in Chinese).
[5]  Chen Haisheng,Cong T N,Yang Wei,et al.Progress in electrical energy storage system:A critical review [J].Progress in Natural Science,2009,19(3):291-312.
[6]  Divya K C,Østergaard J.Battery energy storage technology for power systems — an overview[J].Electric Power Systems Research,2009,79(4):511-520.
[7]  蒋凯,李浩秒,李威,等.几类面向电网的储能电池介绍[J].电力系统自动化,2013,37(1):47-53. Jiang Kai,Li Haomiao,Li Wei,et al.On several battery technologies for power grids[J].Automation of Electric Power Systems,2013,37(1):47-53(in Chinese).
[8]  王皓怀,汤涌,侯俊贤,等.提高互联电网暂态稳定性的大规模电池储能系统并网控制策略及应用[J].电网技术,2013,37(2):327-333. Wang Haohuai,Tang Yong,Hou Junxian,et al.Grid-integration control strategy of large-scale battery energy storage system and its application to improve transient stability of interconnected power grid[J].Power System Technology,2013,37(2):327-333(in Chinese).
[9]  张野,郭力,贾宏杰,等.基于电池荷电状态和可变滤波时间常数的储能控制方法[J].电力系统自动化,2012,36(6):34-38. Zhang Ye,Guo Li,Jia Hongjie,et al.An energy storage control method based on state of charge and variable filler time constant[J].Automation of Electric Power Systems,2012,36(6):34-38(in Chinese)..
[10]  王皓怀,汤涌,侯俊贤,等.风光储联合发电系统的组合建模与等值[J].中国电机工程学报,2011,31(34):1-9. Wang Haohuai,Tang Yong,Hou Junxian,et al.Composition modeling and equivalence of an integrated power generation system of wind,photovoltaic and energy storage unit[J].Proceedings of the CSEE,2011,31(34):1-9(in Chinese).
[11]  李蓓,郭剑波,陈继忠,等.液流储能电池系统支路电流的建模与仿真分析[J].中国电机工程学报,2011,31(27):1-7. Li Bei,Guo Jianbo,Chen Jizhong,et al.Modelling and simulating of shunt current in redox flow battery [J].Proceedings of the CSEE,2011,31(27):1-7(in Chinese).
[12]  陆秋瑜,胡伟,郑乐,等.多时间尺度的电池储能系统建模及分析应用[J].中国电机工程学报,2013,33(16):86-93. Lu Qiuyu,Hu Wei,Zheng Le,et al.Modeling and analysis of battery energy storage systems in multi-time scales application[J].Proceedings of the CSEE,2013,33(16):86-93(in Chinese)..
[13]  Salameh Z M,Casacca M A,Lynch W A.A mathematical model for lead-acid batteries[J].IEEE Transactions on Energy Conversion,1992,7(1):93-98.
[14]  Tremblay O,Dessaint L A,Dekkiche A I.A generic battery model for the dynamic simulation of hybrid electric vehicles[C]//Vehicle Power and Propulsion Conference.Beijing,China:IEEE,2007:284-289.
[15]  李国杰,唐志伟,聂宏展,等.钒液流储能电池建模及其平抑风电波动研究[J].电力系统保护与控制,2010,38(22):115-119. Li Guojie,Tang Zhiwei,Nie Hongzhan,et al.Modeling and controlling of vanadium redox flow battery to smooth wind power fluctuations[J].Power System Protection and Control,2010,38(22):115-119(in Chinese).
[16]  王颖,张凯锋,付嘉渝,等.抑制风电爬坡率的风储联合优化控制方法[J].电力系统自动化,2013,37(13):17-23. Wang Ying,Zhang Kaifeng,Fu Jiayu,et al.Optimization control method of wind/storage system for suppressing wind power ramp rate[J].Automation of Electric Power Systems,2013,37(13):17-23(in Chinese).
[17]  Xie L,Thatte A A,Gu Y.Multi-time-scale modeling and analysis of energy storage in power system operations[C]// Energytech.Cleveland,USA:2011,IEEE:1-6.
[18]  汤涌,卜广全,侯俊贤.PSD-BPA 暂态稳定程序用户手册(4.23版)[R].北京:中国电力科学研究院,2012.Tang Yong,Bu Guangquan,Hou Junxian,et al.User’s manual of transient stability program PSD-BPA(version 4.23)[R].Beijing:China Electric Power Research Institute,2012(in Chinese).
[19]  Braun M,Degner T.Development,verification and application of a battery inverter model for the network analysis tool Power factory[J].International Journal of Distributed Energy Resources,2005,1(4):321-333.
[20]  汤涌,宋新立,刘文焯,等.电力系统全过程动态仿真的数值方法—电力系统全过程动态仿真软件开发之一[J].电网技术,2002,26(9):7-12 Tang Yong,Song Xinli,Liu Wenzhuo,et al.Power system full dynamic simulation part I:numerical method [J].Power System Technology,2002,26(9):7-12(in Chinese).
[21]  Hussien Z F,Cheung L W,Siam M F M,et al.Modeling of sodium sulfur battery for power system applications [J].Elektrika,2007,9(2):66-72.
[22]  李蓓.用于电力系统的全钒氧化还原液流电池的特性分析、建模和仿真研究[D].北京:中国电力科学研究院,2010. Li Bei.Study on characteristic analysis,modeling and simulation of vanadium-redox flow battery applied in energy storage of power system[D] .Beijing :China Electric Power Research Institute,2010(in Chinese).
[23]  Ceraolo M.New dynamical models of lead-acid batteries [J].IEEE Transactions on power system,2000,15(4):1184-1190.
[24]  Chen Min,Rincon-Mora G A.Accurate electrical battery model capable of predicting runtime and I - V performance [J].IEEE Transactions on Energy Conversion,2006,21(2):504-511.
[25]  魏克新,陈峭岩.基于多模型自适应卡尔曼滤波器的电动汽车电池荷电状态估计[J].中国电机工程学报,2012,32(31):19-26, 214.Wei Kexin,Sun Hui.Electric vehicle battery SOC estimation based on multiple-model adaptive kalman filter[J].Proceedings of the CSEE,2012,32(31):19-26,214(in Chinese).
[26]  汤广福.基于电压源换流器的高压直流输电技术[M].北京:中国电力出版社,2010.Tang Guangfu.Voltage resource converter based high voltage direct current transmission technology [M].Beijing:China Electric Power Press,2010(in Chinese).
[27]  Paatero J V,Lund P D.Effect of energy storage on variations in wind power[J].Wind Energy,2005,8(4):421-441.
[28]  陆晓楠,孙凯,黄立培,等.孤岛运行交流微电网中分布式储能系统改进下垂控制方法[J].电力系统自动化,2013,37(1):180-185. Lu Xiaonan,Sun Kai,Huang Lipei,et al.Improved droop control method in distributed energy storage systems for autonomous operation of AC microgrid[J].Automation of Electric Power Systems,2013,37(1):180-185(in Chinese).
[29]  Uehara A,Senjyu T,Yona A.Frequency control by coordination control of WTG and battery using load estimation[C]//International Conference on Power Electronics and Drive Systems.Taipei,China:IEEE,2009:216-221.
[30]  Kottick D,Blau M,Edelstein D.Battery energy storage for frequency regulation in an island power system [J].IEEE Transactions on Energy Conversion,1993,8(3):455-459.
[31]  王浩怀.风光储联合发电系统的建模技术研究及并网稳定分析[D].北京:中国电力科学研究院,2012:17,40. Wang Haohuai.Modeling research and grid- connected stability analysis of integrated generation system of wind,photovoltaic and energy storage[D].Beijing:China Electric Power Research Institute,2012:17,40(in Chinese).

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133