期刊文献+

桥式起重机防摆控制器的设计 被引量:10

An anti-sway controller's design of the overhead crane
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摘要 桥式起重机是一种从事起吊和空中搬运的机械设备,它在机械制造工业和冶金工业中应用得最为广泛。目前国内生产的桥式起重机都是由专职司机手动操作完成大小车的定位和控制吊物的游摆。要在三维空间下由控制器实现桥式起重机的精确定位和消除吊物的摆幅是相当困难的。本文主要阐述了桥式起重机在三维空间下的建模方法,并对该系统进行了开环仿真分析,最后提出应用LQR技术设计一种最优输出跟踪器,实现了桥式起重机的精确定位和消除吊物的游摆。仿真结果表明,这种防摆控制器使被控系统具有良好的动态和稳态性能。
出处 《制造业自动化》 北大核心 2012年第1期122-124,131,共4页 Manufacturing Automation
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参考文献12

  • 1YangBin,XiongBin.Application of LQR techniques to the anti-sway controller of overhead crane[J].Advanced materials research,2010,139-141:1933-1936.
  • 2Maoqing LI.Controller design for 2-DOF underactuated mechanical systems based on controlled Lagrangians and application to Acrobot control[J].Frontiers of Electrical and Electronic Engineering in China,2009,4(4):417-439. 被引量:3
  • 3Nenad Muskinja,Boris Tovomik.Swing up and stabilization of a real inverted pendulum[J].IEEE Trans on Industrial Electronics,2006,53(2):631-639.
  • 4Han B,Lin X G.Adapt steady state Kalman gain using the normalized autocorrelation of innovations[J].IEEE Signal Processing Letters,2005,12(11):780-783.
  • 5Hou M.Controllability and Elimination of Impulsive Modes in Descriptor Systems[J].IEEE Trans on Automatic Control, 2004,49( 10): 1723 - 1727.
  • 6Masoud Z N,Nayfeh A H,AI-Mousa A.Delayed Position- Feedback Controller for the Reduction of Payload Pendulations of Rotary Cranes[J].Journal of Vibration and Control,2003,9(3-4):257-277.
  • 7Omar H M,Nayfeh A H.Gain Scheduling Feedback Control for Tower Cranes[J].Journal of Vibration and Control,2003,9(3-4):399-418.
  • 8Al-mousa A,Nayfeh A H,Kachroo P.Control of Rotary Cra- nes Using Fuzzy Logic[J].Shock and Vibration,2003,10(2):81-95.
  • 9Jin Ho SUH, Jin Woo Lee,Young Jin Lee.Antisway control of an ATC using NN predictive PID control[C].Proceedings of the 30th annual conference of the IEEE industrial electronics society,Busan,Korea,2004,3:2998 -3003.
  • 10G B Kang,Y B Kim,S B An.A new approach to antisway system design for a container crane[C].Proceedings of SICE annum conference,Fukui:SICE Press,2003,2289- 2291.

二级参考文献11

  • 1HU J,Dawson D M. Adaptive of induction motor systems despite rotor resistance uncertainty [J].Automatica, 1996,32 (8) : 1127-1143.
  • 2HU J,Dawson D M.Position tracking ontrol of an induction motor via partial state feedback[J]. Automatica,1995,31 (7): 989- 1000.
  • 3Can Lingzhi,Wang Hongwei,Niu Chao,et al. Adaptive back- stepping control of crane hoisting system[C]//The Proceeding of The Second International Conference on Bio-Inspired Computing:Theories and Applications,2007,9.
  • 4Tarbouchi M,Le-Huy H.High-performance control by input-out-put linearization technique of an induction motor[C]//Industry Applications Conference,1996,1:373-379.
  • 5哈尔滨工程大学403教研室.共架系统海上快速装填及转载技术研究[R].哈尔滨:哈尔滨工程大学,2004..
  • 6KEI H, TETSUBIKO Y, AKIRA K J. Crane control to suppress load swing[J]. International Journal of System science,1989,20(5):715-731.
  • 7AUERNIC J W, TROGER H. Time optimal control of overhead cranes with hoisting of the load[J]. Automatic,1987,23(4):437-447.
  • 8MARK W S. On the robust control of robot manipulators[J]. IEEE Transactions on Automatic Control, 1992,37(11):1782-1786.
  • 9GODHAVN J M, FOSSEN T I, BERGE S P. Non-linear and adaptive backstepping designs for tracking control of ships[J]. International Journal of Adaptive Control and Signal Processing,1998,12(8):649-670.
  • 10JONG H O, JIN S L. Backstepping control design of flexible joint manipulator using only position measurements[A]. Proceedings of the 37th IEEE Conference on Decision & Control[C]. Florida,1998.

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