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一种构建网络状态空间模型的新方法及其在SSR研究中的应用 被引量:18

A Novel Approach to Construct the State-space Model of Power System Grid and Its Application in SSR Study
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摘要 在总结输电网接线特点的基础上,给出网络部分状态变量的选取方法及电容支路动态导纳矩阵的定义,并提出一种形成电力系统网络状态空间模型的新方法。该方法无需通过复杂的拓扑分析生成网络常态树即可确定网络的状态变量,无需按照严格的规则对支路和节点进行编号,即可方便地生成网络状态空间模型,且在网络结构变化时网络状态空间模型修改容易,适于进行多机系统的次同步谐振(subsynchronous resonance,SSR)特征值分析。以国内某多机串补输电系统为例,利用文中所提方法分析了系统的SSR特性及静止无功补偿器对其SSR问题的抑制作用,并通过时域仿真验证了所提方法分析结果的有效性。该方法可为火电厂的系统接入方案规划以及SSR抑制措施的设计提供指导和理论支撑。 The configuration feature of the transmission grid was summarized, then a method to choose state-variables of the grid was presented and the dynamic conductance matrix of capacitor branch was defined, and finally a novel method to construct the state-space model of the network was proposed. Without using the network normal tree to choose state-variables of the network, and without ranking the branches and nodes under strict rules, the method constructs the state-space model of the network conveniently, and the state-space model of the network modifies with the network change easily. That makes the method very effective to study subsynchronous resonance (SSR) of multi-machine power systems. SSR problem of a compensated multi-machine system and its damping by static var compensator (SVC) were studied by the proposed method, and the results were verified by time domain simulations. The method is supposed to be helpful for the planning of power plant integrating and the design of the countermeasure of SSR.
出处 《中国电机工程学报》 EI CSCD 北大核心 2014年第4期605-612,共8页 Proceedings of the CSEE
基金 国家863高技术基金项目(2011AA05A119) 国家电网公司大电网重大专项资助项目课题(SGCC-MPLG026-2012)~~
关键词 次同步谐振 特征值分析 电容支路动态导纳矩阵 多机电力系统 静止无功补偿器 subsynchronous resonance (SSR) eigenvalue analysis dynamic conductance matrix of capacitor branch multi-machine power system static var compensator (SVC)
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参考文献19

  • 1Xie Xiaorong, Guo Xijie, Han Yingduo. Mitigation of multimodal SSR using SEDC in the Shangdu series-compensated power system[J]. IEEE Trans. on Power Systems, 2011, 26(1): 384-391.
  • 2Cen Haifeng, Wang Xitian. Analysis of self-excitation in turbine-generators induced by static blocking filter[C]// Power and Energy Engineering Conference. Chengdu: IEEE Conference Publications, 2010: 1-5.
  • 3Ageawal B L, Farmer R G. Effective damping for SSR analysis of parallel turbine-generators[J]. IEEE Trans. on Power Systems, 1988, 3(4): 1441-1448.
  • 4Iranvani M R. Coupling phenomenon of torsional modes[J]. IEEE Trans. onPower Systems, 1989, 4(3):881-888.
  • 5Iravani M R. Torsional oscillations of unequally-loaded parallel identical turbine-generators[J]. IEEE Trans. on Power Systems, 1989, 4(4): 1514-1524.
  • 6杨帆,王西田,徐英新,陈陈.同型多机电力系统间扭振相互作用的等效简化研究[J].中国电机工程学报,2006,26(5):6-11. 被引量:22
  • 7IEEE Committee report . Reader's guide to subsynchronous resonance[J]. IEEE Trans. on Power Systems, 1992, 7(I): 150-157.
  • 8Parniani M, Iravani M R. Computer analysis of small-signal stability of power systems including network dynamics[J]. IEE Proceedings of Generation, Transmission andDistribution, 1995, 142(6): 613-617.
  • 9Kim Dong-Joon, Moon Yotmg-Hwan, Nam Hae-Kon. SSR small-signal stability analysis program of power systems and its application to IEEE benchmark systems[C]//Power Tech, IEEELausanne, 2007.
  • 10Gross G, Imparato C F, Look P M. A tool for the comprehensive analysis of power system dynamic stability[J]. IEEE Trans. on Power Apparatus and Systems, 1982, 101(1).. 226-234.

二级参考文献49

  • 1陈闽江,陈家庚,丁明.多机电力系统自励磁判定的状态空间分析法[J].电网技术,2004,28(15):53-56. 被引量:14
  • 2倪以信,王艳春,陈寿孙,张宝霖.多机系统直流输电引起的次同步振荡的研究[J].中国电机工程学报,1993,13(2):64-71. 被引量:10
  • 3张帆,徐政.采用SVC抑制发电机次同步谐振的理论与实践[J].高电压技术,2007,33(3):26-31. 被引量:31
  • 4IEEE SSR Working Group. Countermeasures to subsynchronous resonance problems. IEEE Trans on Power Apparatus and Systems, 1980, 99(5): 1810-1818.
  • 5RAMEY D G, KIMMEL D S, DORNEY J W, et al. Dynamic stabilizer verification tests at the SAN JUAN station. IEEE Trans on Power Apparatus and Systems, 1981, 100(12) : 5011- 5019.
  • 6KIMMEL D S, CARTER M P, BEDNAREK J H, et al. Dynamic stabilizer on-line experience. IEEE Trans on Power Apparatus and Systems, 1984, 103(1): 72-75.
  • 7HAMMAD A E, EL-SADEK M. Application of a thyristorcontrolled var compensator for damping subsynchronous oscillations in power systems. IEEE Trans on Power Apparatus and Systems, 1984, 103(1): 198-212.
  • 8SAMRA N C A, SMITH R F, MCDRMOTT T E, et al. Analysis of thyristor-controlled shunt SSR countermeasures. IEEETransonPower Apparatus and Systems, 1985, 104(3): 584-597.
  • 9WANG L, HSU Y Y. Damping of subsynchronous resonance using excitation controllers and static var compensators: a comparative study. IEEE Trans on Energy Conversion, 1988, 3(1).. 6-13.
  • 10HSU Y Y, WU C J. Design of PID static var controller for the damping of subsynchronous oscillations. IEEE Trans on Energy Conversion, 1988, 3(2): 210-216.

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