许剑冰,薛禹胜,张启平,等.电力系统同调动态等值的述评[J].电力系统自动化,2005,32(14):91-95.XuJianbing,XueYusheng,Zhang Qiping,et al.A critical review on coherency-based dynamic equivalences[J].Automation of Electric2 Power Systems,2005,32(14):91-95(in Chinese).
[2]
周海强,张明山,薛禹胜,等.基于戴维南电路的双馈风电场动态等值方法[J].电力系统自动化,2012,36(23):42-46.Zhou Haiqiang,Zhang Mingshan,XueYusheng,et al.A dynamic equivalent method for doubly-fed induction generator wind farm based on Thevenin equivalent circuit[J].Automationof Electric Power Systems,2012,36(23):42-46(in Chinese).
[3]
Conroy J,Watson R.Aggregate modelling of wind farms containing full-converter wind turbine generators with permanent magnet synchronous machines:transient stability studies[J].IET Renewable Power Generation,2009,3(1):39-52.
[4]
Ali M,Ilie I S,Milanović J V,et al.Probabilistic clustering of wind generators[C]//2010 IEEE PES General Meeting.Minneapolis.USA:IEEE,2010:1-6.
[5]
曹娜,于群.风速波动情况下并网风电场内风电机组分群方法[J].电力系统自动化,2012,36(2):42-46.Cao Na,Yu Qun.A grouping method for wind turbines in agrid-6 connected wind farm during wind speed fluctuation[J].Automation of Electric Power Systems,2012,36(2):42-46(in Chinese).
[6]
陈迎.基于运行数据的风电场等效建模研究[D].北京:华北电力大学,2012.
[7]
余洋,米增强,刘兴杰,等.基于运行数据的大型风电场建模方法研究[J].太阳能学报,2011,32(10):1543-1548.Yu Yang,MiZengqinag,Liu Xingjie,et al.Modelling method of large-scale wind farm based on operation data[J].ACTA Energiae Solaris Sinica,2011,32(10):1543-1548(in Chinese).
[8]
苏勋文,米增强,王毅.双馈机组风电场动态等效模型研究[J].电力系统自动化,2012,34(17):72-76.Su Xunwen,MiZengqiang,Wangyi.Study on dynamic equivalence model of wind farms with wind turbine driven doubly fed induction generator[J].Automation of Electric Power Systems,2012,34(17):72-76(in Chinese).
[9]
Akhmatov V,Knudsen H.An aggregate model of a grid connected, large-scale, offshore wind farm for power stability investigations-importance of windmill mechanical system[J].Electric Power Energy Systems,2002,24(9):709-717.
[10]
Poller M,achilles S.Aggregated wind park models for analysing power system dynamics[C]//4th International Workshop on Large Scale Integration of Wind Power and Transmission Networks for Offshore Windfarms.Billund,Denmark:Energynautics,2003:1-10.
[11]
米增强,苏勋文,杨奇逊,等.风电场动态等值模型的多机表征方法[J],电工技术学报,2010,25(5):162-169.MiZengqiang,Su Xunwen,Yang Qixun,et al.Multi-machine representation method for dynamic equivalent model of wind farms[J].Electrical Technology,2010,25(5):162-169(in Chinese).
[12]
陈树勇,王聪,申洪,等.基于聚类算法的风电场动态等值[J].中国电机工程学报,2012,32(4):11-19.Chen Shuyong,Wang Cong,Shen Hong,et al.Dynamic equivalence for wind farms based on clustering algorithm[J].Proceedings of the CSEE,2012,32(4):11-19(in Chinese).
[13]
Muljadi E,Paupulati S,Ellis A,et al,Method of equivalencing for a large wind power plant with multiple turbine representation[C]//2008IEEE PES General Meeting-Conversion and Delivery of Electrical Energy in the 21st Century.Pittsburgh,Pennsylvania,Usa:IEEE,2008:1-9.
[14]
黄伟,张小珍.基于特征分析的大规模风电场等值建模[J].电网技术,2013,37(8):2271-2277.Huang Wei,Zhang Xiaozhen.Feature analysis based equivalent modeling for large-scale wind farms[J].Power System Technology,15 2013,37(8):2271-2277(in Chinese).
[15]
范国英,史坤鹏,郑太一,等.风电场集群接入系统后的聚类分析[J].电网技术,2011,35(11):62-66.Fan Guoying,Shi Kunpeng,ZhengTaiyi,et al.Cluster analysis of grid-connected large scale wind farms[J].Power System Technology,2011,35(11):62-66(in Chinese).
郑竞宏,朱守真.基于滑差同调等值的空调群负荷建模[J].电力系统自动化,2008,32(16):11-15.ZhengJinghong,Zhu Shouzhen.Slip coherency based approach for air conditioning load modeling[J].Automation of Electric Power Systems,2008,32(16):11-15(in Chinese).
[18]
周海强,鞠平,宋忠鹏,等.基于动态相似度与等值缓冲区的电动机动态等值方法[J].电力系统自动化,2010,34(13):24-27,54.Zhou Haiqiang,Ju Ping,Song Zhongpeng,et al.A dynamic equivalent method for induction motors based on dynamic similarity and buffer zone[J].Automation of Electric Power Systems,2010,34(13):24-27,54(in Chinese).
[19]
赵兵,汤涌,张文朝.感应电动机群单机等值算法研究[J].中国电机工程学报,2009,29(19):43-49.Zhao Bing,Tang Yong,Zhang Wenchao.Study on single-unit equivalent algorithm of induction motor group[J].Proceedings of the CSEE,2009,29(19):43-49(in Chinese).
[20]
Wu F,Zhang X P,Godfrey K,et al.Small signal stability analysis and optimal control of a wind turbine with doubly fed induction generator.IET Generation,Transmission & Distribution.2007,1(5):751-760.