期刊文献+

影响电力系统主导振荡模式的关键励磁调节器及其参数的识别 被引量:4

Identification of the key exciters and its parameters effecting on the critical inertial modes of the power system
在线阅读 下载PDF
导出
摘要 模态级数法是分析非线性动态系统的一个新的有效工具。该方法能从系统的内部结构特性入手,通过模式间的非线性相关作用来研究系统的动态特性。基于模态级数推导出了相关指标和二阶非线性相关因子公式。通过非线性相互作用指标揭示系统固有模式间的交互作用对系统动态特性的影响;通过研究状态变量与系统主导振荡模式、复合模式对的非线性相关作用以及控制器参数对非线性相关系数的灵敏度,来识别对系统动态特性和稳定产生很大影响的关键励磁调节器及其参数。 Modal series is a new and effective tool which is used in analyzing the nonlinear dynamic systems, With a view to internal structural characteristic of systems, this method could be used to analyze nonlinear modal interaction in order to study the dynamic characteristic of systems. This paper firstly gives some indices and expressions of nonlinear participation factor based on modal series. Secondly, the effect of modal interaction on the dynamic characteristic of systems is opened out by the nonlinear-interaction indices. In the end, the key exciter and its parameters are identified by studying the nonlinear interaction of state variables with the critical inertial modes and combination of modes and the sensitivity of controller's parameters to nonlinear interaction coefficients.
出处 《继电器》 CSCD 北大核心 2008年第1期15-21,42,共8页 Relay
基金 国家重点基础研究专项经费资助项目(2004Cb217907) 国家自然科学基金资助项目(50595412&50377017)~~
关键词 模态级数法 非线性相关因子 交互模式 主导振荡模式 非线性相关系数 灵敏度 critical inertial modes nonlinear interaction coefficients interaction modes modal series nonlinear participation factor sensitivity
  • 相关文献

参考文献11

  • 1Martinez I, Messina A R, Barocio E. Pertur Bation Analysis of Power Systems: Effects of Second- and Third-order Nonlinear Terms on System Dynamic Behavior[J]. Electric Power Systems Research, 2004, 7(1): 159-167.
  • 2Pariz N, Shanechi H M. Explaining and Validating Stressed Power Systems Behavior Using Modal Series[J]. IEEE Trans on Power Systems,2003,18(2): 778-785.
  • 3Shanechi H M, Pariz N, Vaahedi E. General Nonlinear Modal Representation of Large Scale Power Systems[J].IEEE Trans on Power Systems, 2003,(3): 1103-1109.
  • 4LIU Hong-chao, LI Xing-yuan, ZHENG Yun-hai.Stability Analysis for HVDC/AC Power Systems Based on Modal Series Method[A].In:IEEE-PES/CSEE International Conf on Power System Technology[C]. 2004: Singapore.
  • 5郑云海,李兴源.基于模态级数法的交直流系统的非线性模式交互作用分析[J].电工电能新技术,2005,24(3):45-48. 被引量:7
  • 6郑云海,李兴源,刘红超.带功率调制的交直流系统非线性模态分析[J].电力系统及其自动化学报,2006,18(1):1-4. 被引量:2
  • 7Starrett S K, Fouad A A. Nonlinear Measures of ModeMachine Participation [J].IEEE Trans on Power Systems,1998,13(2):389-394.
  • 8Thapar J, Vittal V, Kliemann W,et al.Application of the Normal Form of Vector Fields to Perdict Interarea Separation in Power Systems[J]. IEEE Trans on Power Systems, 1997: 844-850.
  • 9邓集祥,赵丽丽.励磁调节器对模态非线性相关作用的影响[J].电网技术,2005,29(1):69-74. 被引量:9
  • 10Jang G, Vittal V. Effect of Nonlinear Modal Interaction on Control Performance: Use of Normal Forms Technique In Control Design Part Ⅰ: General Theory and Procedure[J]. IEEE Trans on Power Systems, 1998,13(2):401-407.

二级参考文献35

  • 1Chin-Ming Lin, Vittal V, Kliemann Wet al. Investigation of modal interaction and its effects on control performance in stressed power systems using normal forms of vector fields[J]. IEEE Trans on Power Systems, 1996, 11(2): 781-787.
  • 2Starrett S K, Fouad A A. Nonlinear measures of moda-machine participation interaction[J]. IEEE Trans on Power Systems, 1998,13(2): 389-394.
  • 3Zhu S, Vittal V, Kliemann W. Analyzing dynamic performance of power systems over parameter space using normal forms of vector fields[J]. IEEE Trans on Power Systems, 2001, 16(3): 444-455.
  • 4Jang G, Vittal V, Kliemann W. Effect of nonlinear modal interaction on control performance: use of normal forms technique in control design Ⅰ general theory and procedure[J]. IEEE Trans on Power Systems, 1998, 13(2): 401-413.
  • 5Thapar J, Vittal V, Kliemann W et al. Application of the normal form of vector fields to predict interarea separation in power systems[J]. IEEETrans on Power Systems, 1997, 12(2): 844-850.
  • 6李兴源(Li Xingyuan).高压直流输电系统的运行和控制(Operation and Control of HVDC Transmission System)[M].北京:科学出版社,1998.
  • 7Ni Y X,Vital V,Kliemann W,et al.Nonlinear jodal interaction in HVDC/AC power system with DC power modulation[J].IEEE Trans on Power Systems,1996,11(4):2011-2017.
  • 8Chua Leon O,Kokubu Hiroshi.Normal forms for nonlinear vector fields-part Ⅰ:Theory and algorithm[J].IEEE Trans on Circuits and Systems,1988,35(7):863-880.
  • 9Starret S K,Fouad A A.Nonlinear measure of modemachine participation[J].IEEE Trans on Power Systems,1998,13(2):389-394.
  • 10Jang Gilsoo,Vittal Vijiay,Kliemann Wolfgang.Effect of nonlinear modal interaction on control performance:use of normal forms technique in control design,Part Ⅰ:General theory and procedure[J].IEEE Trans on Power Systems,1998,13 (2):401-407.

共引文献15

同被引文献93

引证文献4

二级引证文献43

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部