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小型帆船自适应自动舵 被引量:2

A kind of Adaptive Autopilot for Yachts
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摘要 帆船由于其结构的特殊使其动态特性呈严重的非线性 ,航向很难控制。首先针对一种小型竞赛用的1 2 m长美洲杯赛帆船 ,从其结构出发建立数学模型 ,并对该模型进行了开环仿真试验以验证其真实程度。然后利用 MATLAB辨识工具在不同的外部条件下得到各具特色的不同模型 ,由此确认模型参数的巨大变化难以用一个近似于当前运行模式下的线性化模型设计控制器 ,因而设计了一个采用自适应 LQR的自动舵以控制帆船在不同外部条件下都能保持航向。最后在该模型上作了仿真 。 Because of the special structure of a yacht, there exists serious nonlinear property in its dynamics. Therefore it is very difficult to keep the course of a yacht. In this paper the structure of a 12m long yacht used for American Cup is analysed, and a mathematical model is built. An open loop simulation is done to verify the authenticity based on this model. Many linear models are gotten by identification under different external conditions with MATLAB. It will be found from the simulation that, it is impossible to design a controller using only one linear model since the parameters will change greatly following the change of environment. An autopilot with adaptive LQR is designed to keep the yacht course under different external conditions. The simulation shows that the performance of the autopilot is very well compared with PID autopilot.
出处 《中国造船》 EI CSCD 北大核心 2003年第1期75-79,共5页 Shipbuilding of China
关键词 自动舵 自适应控制 帆船 结构特点 船体 ship engineering autopilot adaptive control yacht American Cup
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参考文献2

  • 1[1]Newman J N. Marine hydrodynamics [M]. The MIT Press, Cambridge, Massachusetts, 1987.
  • 2[2]Davies N S. A real time yacht simulator [D]. Master thesis, School of Engineering, Auckland University, New Zealand, 1990.

同被引文献14

  • 1葛艳,孟庆春,魏振刚,窦金凤,张文.基于Sugeno模糊模型的帆船控制方法研究[J].控制与决策,2004,19(6):659-662. 被引量:7
  • 2缪国平.帆船运动的力学原理[J].力学与实践,1994,16(1):9-18. 被引量:20
  • 3刘烽,杨广治,李春宝.船舶气象导航最省燃料航线研究[J].中国航海,1994,17(1):8-14. 被引量:4
  • 4田清钧.帆板运动的力学探讨[J].天津师大学报(自然科学版),1996,16(2):26-29. 被引量:6
  • 5陆志才.船舶操纵[M].大连:大连海事大学出版社,2000..
  • 6Flay R G J., Vuletich I J. Development of a wind tunnel test facility for yacht aerodynamic studies [ J ]. Journal of Wind Engineering and Industrial Aerodynamics, 1995,(58) : 231-258.
  • 7Sandler M, Wahl A, Zimmermann R. et al. Autonomous guidance of ships on waterways [ J ]. Robotics and Autonomous Systems. 1996, (18) : 327-335.
  • 8Jasmin Velagic,Zoran Vukiv,Edin Omerdic.Adaptive fuzzy ship autopilot for track—keeping[J].Control Engineering Practice,2003,(11):433—443.
  • 9Sandler M, Wahl A, Zimmermann R, et al. Autonomous Guidance of Ships on Waterways[J]. Robotics and Autonomous Systems, 1996,18(3):327-335.
  • 10Jasmin Velagic, Zoran Vukiv, Edin Omerdic. Adaptive Fuzzy Ship Autopilot for Track-keeping[J]. Control Engineering Practice, 2003,11(4): 433-443.

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