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...
电网技术  2011 

电力系统广域阻尼控制与工程应用

, PP. 29-35

Keywords: 低频振荡,阻尼控制,广域测量系统,高压直流输电

Full-Text   Cite this paper   Add to My Lib

Abstract:

弱阻尼区间低频振荡是制约互联电网区域间输电能力提高的因素。传统阻尼控制器的输入主要为本地信号,不能很好地反映区间振荡模式,对区间振荡模式的阻尼效果很有限。虽然阻尼控制器应用日益广泛,但低频振荡现象仍时有发生。基于广域测量系统的广域阻尼控制是解决区间振荡问题的有效措施,其系统结构、建模、输入信号和控制地点的选择、网络通信延时、控制器设计等方面已经得到了深入研究。对世界范围内广域阻尼控制研究与工程应用进行了综述,并对世界上第1个投入实际工程运行的广域阻尼控制系统进行了介绍和评述。

References

[1]  林其友,陈星莺,曹智峰.多机系统调速侧电力系统稳定器GPSS的设计[J].电网技术,2007,31(3): 54-58.
[2]  Lin Qiyou,Chen Xingying,Cao Zhifeng.Design of a governor-side power system stabilizer for multi-machine power system[J].Power System Technology,2007,31(3):54-58(in Chinese).
[3]  Phake A G.Synchronized phasor measurements in power systems [J].IEEE Transactions on Computer Applications in Power,1993,6(2):10-15.
[4]  IEEE Standard C37. 118-2005,IEEE standard for synchrophasors for power systems[S].
[5]  麦瑞坤,何正友,薄志谦,等.动态条件下的同步相量测量算法的研究[J].中国电机工程学报,2009,29(10):52-58.
[6]  Mai Ruikun, He Zhengyou,Bo Zhiqian,et al.Research on synchronized phasor measurement algorithm under dynamic conditions[J]. Proceedings of the CSEE,2009,29(10):52-58(in Chinese).
[7]  Ree J D L,Centeno V,Thorp J S,et al.Synchronized phasor measurement applications in power systems[J].IEEE Transactions on Smart Grid,2010,2(1):20-27.
[8]  常乃超,兰洲,甘德强,等.广域测量系统在电力系统分析及控制中的应用综述[J].电网技术,2005,29(10):47-50.
[9]  Chang Naichao,Lan Zhou,Gan Deqiang,et al.A survey on applications of wide-area measurement system in power system analysis and control[J].Power System Technology,2005,29(10):47-50(in Chinese).
[10]  许树楷,谢小荣,辛耀中.基于同步相量测量技术的广域测量系统应用现状及发展前景[J].电网技术,2005,29(2):44-49.
[11]  Xu Shukai,Xie Xiaorong,Xin Yaozhong.Present application situation and development tendency of synchronous phasor measurement technology based wide area measurement system [J].Power System Technology,2005,29(2):44-49(in Chinese).
[12]  董明齐,杨东俊,黄涌,等.华中电网WAMS实测区域低频振荡仿真[J].电网技术,2009,33(13):64-69.
[13]  Dong Mingqi,Yang Dongjun,Huang Yong,et al.Simulation of regional low frequency oscillation based on data measured by WAMS of Central China Power Grid[J].Power System Technology,2009,33(13):64-69 (in Chinese).
[14]  徐兴伟,穆钢,王文.基于SCADA和WAMS的电网仿真运行方式[J] .电网技术,2006,30(19): 96-100.
[15]  Xu Xingwei,Mu Gang,Wang Wen.Simulation operation mode of power grid based on SCADA and WAMS[J].Power System Technology, 2006,30(19):96-100(in Chinese).
[16]  Milanovic J V,Duque A C S.Identification of electromechanical modes and placement of PSSs using relative gain array[J].IEEE Transactions on Power Systems,2004,19(1):410-417.
[17]  袁野,程林,孙元章,等.基于系统留数矩阵的广域PSS设计[J].电力系统自动化,2007,31(24):1-6.
[18]  Yuan Ye,Cheng Lin,Sun Yuangzhang,et al.Wide area PSS design based on system residue matrix[J].Automation of Electric Power Systems,2007,31(24):1-6(in Chinese).
[19]  刘学智,袁荣湘.基于输出反馈的电力系统广域阻尼控制[J].电网技术,2010,34(4):115-118.
[20]  Liu Xuezhi, Yuan Rongxiang.Output feedback based wide-area damping control for power system[J].Power System Technology, 2010,34(4):115-118(in Chinese).
[21]  Farsangi M M,Song Y H,Lee K Y.Choice of FACTS device control inputs for damping interarea oscillations[J].IEEE Transactions on Power Systems,2004,19(2):1135-1143.
[22]  Wang H F,Swift F J,Li M.Selection of installing locations and feedback signals of FACTS-based stabilizers in multi-machine power systems by reduced-order modal analysis [J].IEE Proceedings Generation,Transmission & Distribution,1997,144(3):263-269.
[23]  Farsangi M M,Nezamabadi-pour H,Song Y H,et al.Placement of SVCs and selection of stabilizing signals in power systems [J].IEEE Transactions on Power Systems,2007,22(3):1061-1071.
[24]  李鹏,贺静波,石景海,等.交直流并联大电网广域阻尼控制技术理论与实践[J].南方电网技术,2008,2(4):13-17.
[25]  Li Peng,He Jingbo,Shi Jinghai,et al.The theory and practice of wide-area damping control for bulk HVAC/HVDC hybrid power systems[J].Southern Power System Technology,2008,2(4):13-17(in Chinese).
[26]  刘红超,李兴源,王路,等.多馈入直流输电系统中直流调制的协调优化[J].电网技术,2004,28(1):5-9.
[27]  Liu Hongchao,Li Xingyuan,Wang Lu,et al.Coordination and optimization of HVDC modulations in multi-infeed HVDC transmission system[J].Power System Technology,2004,28(1):5-9(in Chinese).
[28]  Xue Ancheng,An Pinghua,Bi Tianshu.Global governor-side damping controller for low frequency oscillation of power systems based on partial state feedback[C]//IEEE Conferences of Control and Decision Conference (CCDC).Xuzhou.China:IEEE,2010:1598-1602.
[29]  Yu X, Vittal K M.The design of a damping controller for static var compensators in power systems [J].IEEE Transactions on Power Systems,2001,16(3):456-462.
[30]  Heniche A,Karnwa I.Control loops selection to damp inter-area oscillations of electrical network[J].IEEE Transactions on Power Systems,2002,17(1):378-384.
[31]  Zabaiou T, Okou F A,Dessaint L A,et al.Time-delay compensation of a wide-area measurements-based hierarchical voltage and speed regulator[J].Canadian Journal of Electrical and Computer Engineering,2008,33(2):77-84.
[32]  戚军,刘兆燕,江全元.考虑时滞影响的电力系统广域集中励磁控制[J].电网技术,2009,33(7):42-46.
[33]  Qi Jun,Liu Zhaoyan,Jiang Quanyuan.Wide-area centralized excitation control in power system considering influence of time- delay[J].Power System Technology,2009,33(7):42-46(in Chinese).
[34]  He Jingbo,Lu Chao,Wu Xiaochen,et al.Design and experiment of wide area HVDC supplementary damping controller considering time delay in China Southern power grid[J].IEE Generation,Transmission and Distribution,2009,3(1):17-25.
[35]  Ray S,Venayagamoorthy G K.Real-time implementation of a measurement-based adaptive wide-area control system considering communication delays[J].IEE Generation,Transmission and Distribution,2008,2(1):62-67.
[36]  胡志祥,谢小荣,肖晋宇,等.广域测量系统的延迟分析及其测试[J].电力系统自动化,2004,28(15):39-43.
[37]  Hu Zhixiang,Xie Xiaorong,Xiao Jinyu,et al.Analysis and test on delays in the wide area measuring system[J].Automation of Electric Power Systems,2004,28(15):39-43(in Chinese).
[38]  Li P,Wu X,Lu C,et al.Implementation of CSG's wide-area damping control system:overview and experience[C]//IEEE Proc of Power Systems Conference and Exposition.Seattle:IEEE,2009:1-9.
[39]  Kamwa I,Grondin R,Hebert Y.Wide-area measurement based stabilizing control of large power systems:a decentralized/hierarchical approach [J].IEEE Transaction on Power Systems,2001,16(1):136-153.
[40]  Dotta D, Silvae A S,Decker I C.Wide-area measurements-based two-level control design considering signal transmission delay [J].IEEE Transactions on Power Systems,2008,24(1):208-216.
[41]  肖晋宇,谢小荣,胡志祥,等.基于在线辨识的电力系统广域阻尼控制[J].电力系统自动化,2004,28(23):22-27.
[42]  Shamsollahi P,Malik O P.Real-time implementation and experimental studies of a neural adaptive power system stabilizer[J].IEEE Transaction on Energy Conversion,1999,14(3):737-742.
[43]  He Jingbo,Lu Chao,Wu Xiaochen,et al.Design and experiment of heuristic adaptive HVDC supplementary damping controller based on online Prony analysis[C]//Proc IEEE PES General Meeting.Tempa: IEEE Power Engineering Society,2007:1-8.
[44]  余贻鑫,李鹏.大区电网弱互联对互联系统阻尼和动态稳定性的影响[J].中国电机工程学报,2005,25(11):6-11.
[45]  Yu Yixin,Li Peng.The impact of weak interconnection of bulk power grids to damping and dynamic stability of power systems [J].Proceedings of the CSEE,2005,25(11):6-11(in Chinese).
[46]  韩英铎,陆超,李立浧.广域测量系统及其在电力系统稳定控制中的应用[J].中国电力,2006(特辑):1-8.
[47]  Han Yingduo,Lu Chao,Li Licheng.Wide area system and the applications in power system stability control[J].Electric Power,2006 (special):1-8(in Chinese).
[48]  韩英铎,吴小辰,吴京涛.电力系统广域稳定控制技术及工程实验[J].南方电网技术,2007,1(1):1-8.
[49]  Han Yingduo,Wu Xiaochen,Wu Jingtao.Research and experiment of wide-area stability control techniques in electric power systems [J].Southern Power System Technology,2007,1(1):1-8(in Chinese).
[50]  李鹏,徐光虎,刘春晓,等.从时频角度重新审视南方电网的区间功率振荡[J].电力系统自动化,2010,34(22):18-23.
[51]  Li Peng,Xu Guanghu,Liu Chunxiao,et al.A review of inter-area oscillations in China Southern Grid in a time-frequency perspective[J].Automation of Electric Power Systems,2010,34(22):18-23(in Chinese).
[52]  陈刚,何潜,段晓,等.电力系统低频振荡分析与抑制综述[J].南方电网技术,2010,4(3):17-22.
[53]  Chen Gang,He Qian,Duan Xiao,et al.Overview on analysis and control of low frequency oscillation [J].Southern Power System Technology,2010,4(3):17-22(in Chinese).
[54]  Kundur P.Power system stability and control[M].New York:McGraw-Hill,1994:465-552.
[55]  Noroozian N,Andersson G..Damping of inter-area and local modes by use of controllable components[J].IEEE Transactions on Power Delivery,2002,10(4):2007-2012.
[56]  Mhaskar U P, Kulkarni A M.Power oscillation damping using facts devices:modal controllability,observability in local signals,and location of transfer function zeros[J].IEEE Transactions on Power Systems,2006,21(1):286-294.
[57]  Cresap R L,Scott D N, Mittelstadt W A,et al.Operating experience with modulation of the pacific HVDC inter-tie[J].IEEE Transactions on Power Apparatus and Systems,1978,97(4):1053-1059.
[58]  Taylor C W, Lefebvre S.HVDC controls for system dynamic performance[J].IEEE Transactions on Power Systems,1991,6(2):743-752.
[59]  Smed T,Andersson G.Utilising HVDC to damp power oscillations[J].IEEE Transactions on Power Delivery,1993,8(2):620-627.
[60]  Milanovic J V.Damping of the low-frequency oscillations of the generator:dynamic interactions and the effectiveness of the controllers[J].IEE Proceedings Generation,Transmission and Distribution,2002,149(6):753-760.
[61]  Xie Xiaorong,Xin Yaozhong,Xiao Jinyu,et al.WAMS applications in Chinese power system [J].IEEE Power and Energy Magazine,2006,4(1):54-63.
[62]  Yingchen Z,Markham P,Tao X,et al.Wide-area frequency monitoring network (FNET) architecture and applications [J].IEEE Transactions on Smart Grid,2010,2(1):159-167.
[63]  Heniche A,Kamwa I.Assessment of two methods to select wide-area signals for power system damping control[J].IEEE Transactions on Power Systems,2008,23(2):572-581.
[64]  贺静波,李立浧,陈辉祥,等.基于广域信息的电力系统阻尼控制器反馈信号选择[J].电力系统自动化,2007,31(9):6-10.
[65]  He Jingbo,Li Licheng,Chen Huixiang,et al.Selection of feedback signal for power system damping controller based on wide area measurements[J].Automation of Electric Power Systems,2007,31(9):6-10(in Chinese).
[66]  Far H G,Banaka H,Li P,et al.Damping interarea oscillations by multiple modal selectivity method[J]. IEEE Transactions on Power Systems,2009,24(2):766-775.
[67]  汪娟娟,张尧.相对增益矩阵原理在多直流附加调制信号选取中的应用[J].中国电机工程学报,2009,29(1):74-79.
[68]  Wang Juanjuan,Zhang Yao.Application of relative gain array principle in selecting modulation signals of multiple HVDC supplementary controllers[J].Proceedings of the CSEE,2009,29(1):74-79(in Chinese).
[69]  Xiao Jinyu,Xie Xiaorong,Hu Zhixiang,et al.Power systems wide-area damping control based on online system identification [J].Automation of Electric Power Systems,2004,28(23):22-27(in Chinese).
[70]  陈树恒,李兴源,武凌云,等.基于降阶模型辨识的交直流混合输电系统广域阻尼控制[J].电网技术,2007,31(17):36-40.
[71]  Chen Shuheng,Li Xingyuan,Wu Lingyun,et al.Wide-area damp control for AC/DC hybrid transmission systems based on identification of reduced order model[J].Power System Technology,2007,31(17):36-40(in Chinese).
[72]  陈刚,段晓,张继红,等.基于ARMA模型的低频振荡模式在线辨识技术研究[J].电网技术,2010,34(11): 48-54.
[73]  Chen Gang,Duan Xiao,Zhang Jihong,et al.A new approach for online identification of low frequency oscillation modes based on auto-regressive moving-average model[J].Power System Technology,2010,34(11):48-54(in Chinese).
[74]  Browne T J,Vittal V,Heydt G T,et al.A comparative assessment of two techniques for modal identification from power system measurements[J].IEEE Transactions on Power Systems,2008,23(3):1408-1415.
[75]  刘学智,袁荣湘.基于输出反馈的电力系统广域阻尼控制[J].电网技术,2010,34(4):115-118.
[76]  Liu Xuezhi,Yuan Rongxiang.Output feedback based wide-area damping control for power system[J].Power System Technology,2010,34(4):115-118(in Chinese).
[77]  吴小辰,陆超,贺静波,等.直流广域自适应阻尼控制器设计与RTDS实验[J].电力系统自动化,2007,31(15):11-16.
[78]  Wu Xiaochen,Lu Tao,He Jingbo,et al.Design and RTDS experiment of adaptive HVDC supplementary damping controller based on WAMS [J].Automation of Electric Power Systems,2007,31(15):11-16(in Chinese).
[79]  李战鹰,韩伟强,郭琦,等.基于广域自适应多直流协调控制的RTDS仿真研究[J].南方电网技术,2008,2(2):58-66.
[80]  Li Zhangying,Han Weiqiang,Guo Qi,et al.RTDS simulation study on wide area adaptive coordinated control of multi HVDC system [J].Southern Power System Technology,2008,2(2):58-66(in Chinese) .
[81]  肖鸣,莫琦,李鹏,等.南方电网多直流协调控制系统的运行与评估[J].南方电网技术,2010,4(3):42-46.
[82]  Xiao Ming,Mo Qi,Li Peng,et al.Operation and evaluation of the coordinated HVDC damping control system of China Southern Power Grid[J].Southern Power System Technology,2010,4(3):42-46(in Chinese).
[83]  李鹏,吴小辰,李立浧,等.南方电网广域阻尼控制系统及其运行分析[J].电力系统自动化,2009,33(18):52-56.
[84]  Li Peng,Wu Xiaochen,Li Licheng,et al.Wide-area damping control system in China Southern Power Grid and its operation analysis [J].Automation of Electric Power Systems,2009,33(18):52-56(in Chinese).
[85]  Bandyopadhaya Y G,Prabhu S.A new approach to adaptive power system stabilizers[J].Electric Machines and Power Systems,1988,14(2):111-125.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133