期刊文献+

FUZZY GLOBAL SLIDING MODE CONTROL BASED ON GENETIC ALGORITHM AND ITS APPLICATION FOR FLIGHT SIMULATOR SERVO SYSTEM 被引量:14

FUZZY GLOBAL SLIDING MODE CONTROL BASED ON GENETIC ALGORITHM AND ITS APPLICATION FOR FLIGHT SIMULATOR SERVO SYSTEM
下载PDF
导出
摘要 To alleviate the chattering problem, a new type of fuzzy global sliding mode controller (FGSMC) is presented. In this controller, the switching gain is estimated by fuzzy logic system based on the reachable conditions of sliding mode controller(SMC), and genetic algorithm (GA) is used to optimize scaling factor of the switching gain, thus the switch chattering of SMC can be alleviated. Moreover, global sliding mode is realized by designing an exponential dynamic sliding surface. Simulation and real-time application for flight simulator servo system with Lugre friction are given to indicate that the proposed controller can guarantee high robust performance all the time and can alleviate chattering phenomenon effectively. To alleviate the chattering problem, a new type of fuzzy global sliding mode controller (FGSMC) is presented. In this controller, the switching gain is estimated by fuzzy logic system based on the reachable conditions of sliding mode controller(SMC), and genetic algorithm (GA) is used to optimize scaling factor of the switching gain, thus the switch chattering of SMC can be alleviated. Moreover, global sliding mode is realized by designing an exponential dynamic sliding surface. Simulation and real-time application for flight simulator servo system with Lugre friction are given to indicate that the proposed controller can guarantee high robust performance all the time and can alleviate chattering phenomenon effectively.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2007年第3期13-17,共5页 中国机械工程学报(英文版)
基金 This project is supported by Aeronautics Foundation of China (No. 00E51022)
关键词 Sliding mode control Chattering free Fuzzy control Genetic algorithm Flight simulator Sliding mode control Chattering free Fuzzy control Genetic algorithm Flight simulator
  • 相关文献

参考文献11

  • 1YOUNG K D,UTKIN V I,OZGUNER U.A control engineer's guide to sliding mode control[J].IEEE Transactions on Control Systems Technology,1999,7(3):328-342.
  • 2HUNG J C.Chattering handling for variable structure control systems[C]//Proc.of IECON'93,Hawaii.USA:IEEE Press,1993:1 968-1 972.
  • 3MEYSTEL A,NISENZON Y,NAWATHE R.Merger of rule based and variable structure controller[C]//Second IEEE Conference on Control Applications,Vanconver,B C.Canada:IEEE Press,1993:735-740.
  • 4WANG J,RAD A B,CHAN P T.Indirect adaptive fuzzy sliding mode control:Part Ⅰ:fuzzy switching[J].Fuzzy Sets and systems,2001,122(1):21-30.
  • 5CHAN P T,RAD A B,WANG J.Indirect adaptive fuzzy sliding mode control:Part Ⅱ:parameter projection and supervisory control[J].Fuzzy Sets and Systems,2001,122(1):31-43.
  • 6MORRIS S,DASH P K,BASU K P.A fuzzy variable structure controller for STATCOM[J].Electric Power Systems Research,2003,65(1):23-34.
  • 7LIN C M,HSU C F.Adaptive fuzzy sliding-mode control for induction servomotor systems[J].IEEE Transactions on Energy Conversion,2004,19(2):362-368.
  • 8LiuJinkun LiuQiang ErLianjie.ZERO PHASE ERROR REAL TIME CONTROL FOR FLIGHT SIMULATOR SERVO SYSTEM[J].Chinese Journal of Mechanical Engineering,2004,17(1):132-135. 被引量:5
  • 9MAN K F,TANG K S,KWONG S.Genetic algorithms:concepts and applications[J].IEEE Transactions on Industrial Electronics,1996,43(5):519-543.
  • 10CANUDAS W C,OLSSON H,ASTROM K J,et al.A new model for control of systems with friction[J].IEEE Transactions on Automatic Control,1995,40(3):419-425.

二级参考文献9

  • 1[1]Tomizuka M. Zero phase error tracking algorithm for digital control. ASME Journal of Dynamic Systems, Measurement and Control, 1987, 109: 65~68
  • 2[2]Haack B, Tomizuka M. The effect of adding zeros to feedforward controllers. ASME Journal of Dynamic Systems, Measurement and Control, 1991, 113: 6~10
  • 3[3]Torfs D. Extended bandwidth zero phase error tracking control of nonminimal phase systems. ASME Journal of Dynamic Systems, Measurement and Control, 1992, 114: 347~351
  • 4[4]Menq C H, Chen J J. Precision tracking control of discrete time nonminimum phase systems. ASME Journal of Dynamic Systems, Measurement and Control, 1993, 115: 238~245
  • 5[5]Xia J Z, Menq C H. Precision tracking control of non-minimum phase systems with zero phase error. International Journal of Control, 1995, 61: 791~807
  • 6[6]Funahashi Y, Yamada M. Zero phase error tracking controllers with optimal gain characteristics. ASME Journal of Dynamic Systems, Measurement and Control, 1993, 115: 311~318
  • 7[7]Tsao T C. Optimal feedforward digital tracking controller design. ASME Journal of Dynamic Systems, Measurement and Control, 1994, 116: 583~591
  • 8[8]Tsao T C, Tomizuka M. Adaptive zero phase error tracking algorithm for digital control. ASME Journal of Dynamic Systems, Measurement and Control, 1987, 109: 349~354
  • 9[9]Yeh S S, Hsu P L. An optimal and adaptive design of the feedforward motion controller. IEEE Transactions on Mechatronics, 1999, 4: 428~438

共引文献4

同被引文献114

引证文献14

二级引证文献110

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