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数据延时对电网广域监视控制系统控制应用的影响分析 被引量:1

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摘要 随着学术理论和工艺技术的不断发展,通过使用同步相测量技术对广域电网进行远程实时监控、保护,进而优化电网调度、提高可靠性的构想已变为现实。然而长期以来,学术研究还主要集中在广域监视控制(Wide Area Monitoring and Control,WAMC)系统的控制策略和保护应用方面;对WAMC系统控制应用对数据测量和通信系统依赖性的研究却仍处于起步阶段。因此,为保证WAMC系统的可用性和控制准确性,分析数据质量对系统控制应用性能的影响十分必要。讨论了WAMC系统数据传送和处理环节中的延时问题,研究了数据延时对电网WAMC系统中静态无功补偿器(Static Var Compensator,SVC)性能的影响,讨论了采用电力系统稳定器(Power System Stabilizers,PSS)的就地控制,降低数据延时影响的可能性。
出处 《电气应用》 北大核心 2012年第9期22-26,共5页 Electrotechnical Application
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参考文献12

  • 1Phadke A G . The wide world of wide-area measure- ments [ J]. IEEE Power and Energy Magazine, 2008, 2 (9/10): 52-65.
  • 2Karlsson D , Hemmingsson M , Lindahl S. Wide area system monitoring and control [ J]. IEEE Power & En- ergy Magazine, 2004, 2 (9/10): 68-76.
  • 3Phadke A G , Thorp J S . Synchronized phasor meas- urements and their applications [ M ]. Springer, 2008.
  • 4Marinez C , Parashar M , Dyer J , eta|. Phasor data requirements for real time wide-area monitoring, control and protection applications [ EB/OL]. CERTS/EPG, EIPP-Real Time Task Team, 2005-01, http://www. naspi, org/resources/archive/rttt/eipprealtime_ group_ data_ requirements_ draft5 _ jan26_ 2005. pdf.
  • 5Kim M , DamborgM J , HuangJ , etal. Wide-area a- daptive protection using distributed control and high- speed communication [ C ]. Proceedings of 2002 the 14th Power System Computation Conference, Sevilla, Spain.
  • 6Chenine M , NordstrOm L . Investigation of communi- cation delays and data incompleteness in muhi-PMU wide area monitoring and control systems [ C ]. Pro- ceedings of 2009 PowerTech, Bucharest, Romania.
  • 7Huang J , Venkata S S . Wide area adaptive protec- tion: architecture, algorithms and communications [ C ]. Proceedings of Power Systems and Communica- tions Infrastructure for the Future, Beijing, September 2002.
  • 8Kundur P . Power system stability and control [ M ]. McGraw-Hill, Example 12.6, 1994: 813.
  • 9Klein M , Rogers G J , Moorty S, et al. Analytical in- vestigation of factors influencing PSS performance [ J]. IEEE Transactions on EC, 1992, 7 (3) : 382-390.
  • 10IEEE Special Stability Controls Working Group. Static var compensator models for power flow and dynamic per- formance simulation [ J]. IEEE Transactions on Power Systems, 1994, 9 (2).

同被引文献32

  • 1江全元,邹振宇,吴昊,曹一家,王海风.基于相对增益矩阵原理的柔性交流输电系统控制器交互影响分析[J].中国电机工程学报,2005,25(11):23-28. 被引量:42
  • 2Kundur P, Balu N J, Lauby M G. Power system stability and control[M]. New York: McGraw-hill, 1994.
  • 3Kosterev D N, Taylor C W, Mittelstadt W A. Model validation for the August 10, 1996 WSCC system outage[J]. IEEE Transactions on Power Systems, 1999, 14(3): 967-979.
  • 4Li L, Wu X, Li HVDC systems CSG[C]//IEEE P. Coordinated control of multiple for damping interarea oscillations in Power Engineering ference and Exposition in Africa, 2007 Society Con- 1-7.
  • 5Cao Y, Saha P. Improved branch and bound method for control structure screening[J]. Chemical Engin- eering Science, 2005, 60(6): 1555-1564.
  • 6Chen C L, Wang S C. Branch-and-bound scheduling for thermal generating units[J]. IEEE Transactions on Energy Conversion, 1993, 8(2): 184-189.
  • 7Cumanan K, Krishna R, Musavian L, et al. Joint beamforming and user maximization techniques for cognitive radio networks based on branch and bound method[J]. IEEE Transactions on Wireless Communi- cations, 2010, 9(10): 3082-3092.
  • 8Nema S, Goulermas J G, Sparrow P C. A hybrid particle swarm branch-and-bound (HPB) optimizer for mixed discrete nonlinear programming[J]. IEEE Transactions on Systems, Man and Cybernetics, Part A: Systems and Humans, 2008, 38(6): 1411-1424.
  • 9Thakoor N, Jean G. Branch-and-bound for model selection and its computational complexity[J]. IEEE Transactions on Knowledge and Data Engineering, 2011, 23(5): 655-668.
  • 10Thakoor N, Jean G, Devarajan V. Multibody structure- and-motion segmentation by branch-and-bound model selection[J]. IEEE Transactions on Image Pro- cessing, 2010, 19(6): 1393-1402.

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