期刊文献+

一类时变非线性系统的参数反馈模糊控制器分析与设计 被引量:9

ANALYSIS AND DESIGN OF FUZZY CONTROLLER WITH PARAMETER FEEDBACK FOR A KIND OF NONLINEAR TIME VARYING SYSTEM
下载PDF
导出
摘要 本文针对工业控制中一类常见的非线性时变系统 ,提出了一种利用参数反馈在线修正规则的模糊控制器 ;在全面介绍控制器结构与功能的同时 ,详细阐述了模糊规则修正器的原理和设计方法 ,并采用基于功能评价的方法进行系统分析 .在这个控制系统中 ,基本模糊控制器简单实用 ;模糊规则修正器能充分利用对被控对象的分析成果 ;GA寻优算法能进一步简化设计 ,提高性能 .仿真结果表明 ,这种控制器的效果是令人满意的 . This article puts forward a kind of self organization fuzzy controller with parameter feedback for a kind of common nonlinear time varying system in industry. It introduces the construction and functions of the whole controller, explains the principle and design method of the fuzzy rules reviser, and uses a method based on function evaluation to analyze the system. In this control system, the fundamental fuzzy controller is simple and applicable, the fuzzy rule reviser can use sufficiently the analysis result of the object controlled, GA can simplify the design and improve the performance of this controller. The results of simulation show that the effect of this controller is satisfactory.
出处 《信息与控制》 CSCD 北大核心 2002年第4期310-314,共5页 Information and Control
基金 河南省自然科学基金资助 (项目编号 :0 2 110 5 0 70 0 )
关键词 时变非线性系统 参数反馈 模糊控制器 分析 设计 模糊控制 工业控制 fuzzy control, parameter feedback, GA,nonlinear
  • 相关文献

参考文献6

二级参考文献5

  • 1Nie Junhong,Fuzzy Sets Syst,1996年,82卷,1期,93页
  • 2古德温 G C,自适应滤波、预测与控制,1992年
  • 3胡家耀,吴植翘,宋寿山.参数自调整Fuzzy-PI调节器[J]信息与控制,1987(06).
  • 4陈南岳.现代加热炉过程控制技术及其数学模型[J]冶金自动化,1985(03).
  • 5李宝绶,刘志俊.用模糊集合理论设计一类控制器[J]自动化学报,1980(01).

共引文献56

同被引文献48

  • 1韩晓明.火电厂蒸汽温度物理仿真系统设计及在线测控[J].太原师范学院学报(自然科学版),2002,1(4):133-134. 被引量:2
  • 2连悦,刘文清,刘建国,张天舒,黄书华,高闽光.温度自动补偿技术在DPL中的应用[J].激光技术,2004,28(6):598-601. 被引量:1
  • 3高越,高振海,李向瑜.基于自适应Kalman滤波的汽车横摆角速度软测量算法[J].江苏大学学报(自然科学版),2005,26(1):24-27. 被引量:15
  • 4Shu Huailin & Pi Youguo. PID neural networks for time-delay systems[A]. Proceedings of 7th Inter-national Symposium on Process Systems Engineering, Elsevier House[C], 2000,24:2-7
  • 5Song Niannian ,Han Xiaoming , Physical Simulation and online Measure and Control of a Complicated Temperature System[A], Proc. of the 4th International Symposium on Test and Measurement,[C] v1, 2001, 679-682
  • 6MENDEZ D A, GALVEZ E D, CISTERNAS L A. Cisternas Modeling of grinding and classification circuits as applied to the design of flotation processes[J]. Computers & Chemical Engineering, 2009,33 ( 1 ) : 97-111.
  • 7GONZALEZ G D, MIRANDA D, CASALI A, et al. Detection and identification of ore grindability in a semiautogenous grinding circuit model using wavelet transform variances of measured variables [J].International Journal of Mineral Processing, 2008, 89(1) :53-59.
  • 8CHOI T J, SUBRAHMANYA N, LI H, et al. Generalized practical models of cylindrical plunge grinding processes [J ]. International Journal of Machine Tools and Manufacture, 2008,48 ( 1 ) : 61-72.
  • 9ZHANG R X, HUANG G B, SUNDARAJAN N, et al. Improved GAP-RBF network for classification problems [J]. Neuroeomputing, 2007, 70 ( 16): 3011-3018.
  • 10AGUIRRE L A, ALVES G B, CORREA M A. Steady-state performance constraints for dynamical models based on RBF networks [J].Engineering Applications of Artificial Intelligence, 2007, 20 (7) 924-935.

引证文献9

二级引证文献30

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