期刊文献+

机炉协调系统的非线性输出跟踪控制 被引量:20

NONLINEAR OUTPUT TRACKING CONTROL FOR THE COORDINATED SYSTEM OF BOILER-TURBINE UNITS
在线阅读 下载PDF
导出
摘要 为了克服非线性环节以及能量供需之间关联耦合作用对协调系统控制品质的影响,提高单元制发电机组的快速负荷响应能力,本文基于非线性稳定逆原理,采用非线性输出跟踪控制结构,针对一个通用的非线性协调系统模型,设计出非线性输出跟踪控制器。该控制器由稳定逆系统及反馈控制器两部分组成,稳定逆系统相当于前馈部分,用于提高系统的响应速度;反馈控制器保证了系统的稳定。在不同负荷下的仿真试验表明,依据非线性输出跟踪控制策略设计出的控制系统具有良好的解耦效果和设定点跟踪能力。 To trail off the multivariable, nonlinear and coupling behavior of boiler-turbine units, and to improve the load-following capability of coordinated control system, a nonlinear stable inversion theory and a multivariable output tracking control structure are used to design a nonlinear output-tracking controller for a benchmark nonlinear boiler-turbine unit model. The controller is composed of stable inversion and feedback controller. The stable inversion is implemented as a feedforward controller to improve the load-following capability, and the feedback controller is utilized to guarantee the stability and robustness of the whole system. Simulation tests show that the nonlinear output tracking structure can be applied to a wide range and have good decouple performance. The electric output and the steam pressure can track the desired trajectory accurately.
出处 《中国电机工程学报》 EI CSCD 北大核心 2005年第1期147-151,共5页 Proceedings of the CSEE
基金 教育部博士点基金项目(20020079007)。
关键词 输出跟踪控制 反馈控制器 非线性稳定 通用 控制品质 逆系统 分组 稳定 关联耦合 负荷 Boiler-turbine units Coordinated control Output tracking control Nonlinear stable inversion
  • 相关文献

参考文献17

  • 1Chen K W, Asok R. Robust wide-range control of steam-electric power plants[J]. IEEE Transactions on Control System Technology,1997, 5(1): 74-88.
  • 2Tan W, Marquez H J, Chen T W. Multivariable robust controller design for a boiler system[J]. IEEE Transactions on Control Systems Technology, 2002, 10(5): 735-742.
  • 3Frederic L M, Gilles D. Design of a controller for a steam generator of a power plant using robust control and genetic algorithm [C]. Proceedings of IEEE International Conference on Control Applications, Giasgow, Scotland, U. K, 2002.
  • 4Garduno-Ramirez R, Lee K Y. Multiobjective optimal power plant operation through coordinate control with pressure set point scheduling[J]. IEEE Transaction on Energy Conversion, 2001, 16(2):115-122.
  • 5丁轲轲.电站协调控制系统工程整定的一种新方法[J].电力科学与工程,2002,18(4):37-39. 被引量:20
  • 6Prasad G, Irwin G W, Swidenbank E, et al. Plant-wide predictive control for a thermal power plant based on a physical plant model. IEE Proc. -Control Theory Appl., 2002, 147(5): 523-537.
  • 7Beheshti M T H, Rezaee M M. A new hybrid boiler master controller[C]. Proceedings of American Control Conference,Anchorage, AK, 2002.
  • 8Prasad G, Swidenbank E, Hogg B. A neural net model-based multivariable long-range predictive control strategy applied in thermal power plant control[J]. IEEE Transactions on Energy Conversion,1998, 13(2): 176-182.
  • 9Bolek W, Sasiadek J, Wisniewski T. Linearization of non-linear MIMO model of large power plant station[C]. Proceedings of American Control Conference, Chicago, Illinois, 2002.
  • 10房方,刘吉臻,谭文.单元机组协调系统的非线性内模控制[J].中国电机工程学报,2004,24(4):195-199. 被引量:45

二级参考文献18

  • 1Cori R, Maffezzori C. Practical optimal control of a drum boiler power plant[J]. Automatica, 1984, 20(2): 163-173.
  • 2Johansson L, Koivo H N. Inverse nyquist array technique in the design of a multivariable controller for a solid-fuel boiler[J]. Int. J Control,1984, 40(5): 1077-1088.
  • 3Rugh W J, Shamma J S. A survey of research on gain scheduling[J]. Automatica, 2000, 36(10): 1401-1425.
  • 4Rugh W J. Analytical framework for gain scheduling[J].IEEE Control Syst. Mag., 1991, 11(1): 79-84.
  • 5Shamma J S. Analysis and design of gain scheduled control system[D]. Ph.D dissertation, Lab. Inform. Decision Systems, Massachusetts Inst. Technology, Cambridge, May 1988.
  • 6Stilwell D J, Rugh W J. Interpolation of observer state feedback controllers for gain scheduling[J]. IEEE Transaction on Automatic Control, 1999, 44(6): 1225-1229.
  • 7Benoit Clement, Gilles Duc. An Interpolation Method for Gainscheduling [C]. Proceedings of the 40^th IEEE Conference on Decision and Control, 2001: 1310-1315.
  • 8Katsuhiko Ogata. Modern Control Engineering [M]. USA, New Jersey: Prentice Hall, 2002.
  • 9Robert Dimeo, Kwang Y Lee. Boiler-turbine control system design using a genetic algorithm[J]. IEEE Transactions on Energy Conversion, 1995, 10(4): 752-759.
  • 10Adel Ben-Abdenmour, Kwang Y Lee. A deoentralized controller design for a power plant using robust local controllers aad function mapping[J], IEEE Transactions on Energy Conversion, 1996,11(2):394-400.

共引文献75

同被引文献213

引证文献20

二级引证文献117

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