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基于NGPC的UUV路径跟随控制 被引量:2

NGPC-based path following control of UUV
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摘要 针对水下无人潜航器(UUV)路径跟随问题,提出了一种基于模型的非线性反馈跟随控制方法.考虑UUV两输入、三输出的非线性跟随模型,选择与输出误差和控制误差相关的性能指标函数,利用基于最小化指标函数的非线性广义预测控制算法设计路径跟随器.针对UUV跟随模型简化后不确定性对路径跟随效果的影响,在控制闭合回路中提出了基于积分形式的水动力参数辨识方案,以减小路径跟随过程中规划路径和实际跟随路径之间的位置误差.最后,通过湖试验证了所提出方法的有效性. A nonlinear feedback control algorithm based on model to solve path following of unnamed underwater vechicle(UUV) was proposed.Two-input,three-output nonlinear following model of UUV was considered.Nonlinear generalized predictive control(NGPC) was used to design path following controller by choosing NGPC cost function related to the errors of outputs and the errors of the control inputs.The minimization of NGPC cost function was the precondition of designing the controller.The parameter identification algorithm based on integeral form in the closed-loop was proposed to reduce the uncertainty of simplified following model by which position error between the reference path and the real path could be reduced.Experiments in the lake show the validity of the presented method.
出处 《华中科技大学学报(自然科学版)》 EI CAS CSCD 北大核心 2012年第5期120-124,共5页 Journal of Huazhong University of Science and Technology(Natural Science Edition)
基金 国家自然科学基金资助项目(51179038) 教育部新世纪优秀人才支持计划资助项目(NCET-10-0053)
关键词 潜航器 非线性模型 跟随控制 参数辨识 预测控制 路径跟踪 underwater vehicle nonlinear model following control parameter identification predictive control path following
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参考文献12

  • 1Lapierre L, Soetanto D control of an AUV[J]. Nonlinear path following Ocean Engineering, 2007, 34: 1734-1744.
  • 2Encarnasiio P, Pascoal A. 3D path following for autonomous underwater vehicle[C]//Proceedings of the 39th IEEE Conference on Decision and Control. Syd- ney: IEEE, 2000: 2977-2982.
  • 3Dutka A S, Ordys A W, Grimble M J. Non-linear predictive control of 2 DOF helicopter model[C]/// Proceedings of the 42nd IEEE Conference on Deci- sion and Control. Hawaii. IEEE, 2003: 3954-3959.
  • 4李玉清,方华京,朱菲.随机时延网络化控制系统的自适应预测控制[J].华中科技大学学报(自然科学版),2009,37(S1):292-296. 被引量:7
  • 5Liu Ning. Intelligent path following method for non- holonomie robot using fuzzy control[C]//2009 See ond International Conference on Intelligent Networks and Intelligent Systems. Shijiazhuang: Hebei Uni- versity of Technology Press, 2009: 282-285.
  • 6Chen Wenhua, Balance D J, Gawthrop P J. Optimal control of nonlinear systems: a predictive control ap- proach[J]. Automatiea, 2003, 39:633- 641.
  • 7Kinsey J C, Whitcomb L L. Model-based nonlinear observers for underwater vehicle navigation: theory and preliminary experiments[C]//2007 IEEE Inter national Conference on Robotics and Automation. Netherlands: University of Twente, 2007: 4251- 4256.
  • 8马岭,崔维成.NTSM控制的AUV路径跟踪控制研究[J].中国造船,2006,47(4):76-82. 被引量:10
  • 9Ishitobi M, Nishi M, Nakasaki K. Nonlinear adap- tive model following control for a 3-DOF tandem rotor model helicopter [ J ]. Control Engineering Practice, 2010, 3: 1-8.
  • 10郭毓,刘萍,胡彦,陈庆伟.不确定机械臂的组合自适应迭代学习轨迹跟踪[J].华中科技大学学报(自然科学版),2008,36(S1):295-298. 被引量:2

二级参考文献34

  • 1李美之,钟伟芳,吴国荣,梁以德.一种求解柔性操纵器动力学方程的数值方法[J].华中科技大学学报(自然科学版),2004,32(8):25-27. 被引量:9
  • 2王艳,周川,胡维礼.基于观测器的长时延网络控制系统设计[J].南京理工大学学报,2006,30(2):167-172. 被引量:7
  • 3Godhavn J M.Nonlinear tracking of underactuated surface vessels[A].Proc.35th IEEE Conf.on Decision and Control[C].Kobe:1996.987-991.
  • 4Skjetne R and Fossen T I.Nonlinear maneuvering and control of ships[A].Proc.of Oceans 2001 MTS/IEEE conference[C].2001.1808-1815.
  • 5Lapierre L,Soetanto D,Pascoal A.Nonlinear path following with applications to the control of autonomous underwater vehicles[A].Proceedings of the 42nd IEEE Conference on Decision and Control[C].Maui:2003.1256-1261.
  • 6Do K D,Jiang Z P,Pan J.Robust adaptive path following of underactuated ships[J].Automatica,2004,40(6):929-944.
  • 7Yoerger D R,Slotine J J E.Robust trajectory control of underwater vehicles[J].IEEE Journal of Oceanic Engineering,1985,10(4):462-470.
  • 8Cristi R,Papoulias F A,Healey A.Adaptive sliding mode control of autonomous underwater vehicles in the dive plane[J].IEEE Journal of Oceanic Engineering,1990,15(3):152-160.
  • 9Healey A,Lienard D.Multivariable sliding-mode control for autonomous diving and steering of unmanned underwater vehicles[J].IEEE Journal of Oceanic Engineering,1993,18(3):327-339.
  • 10Man Z,Yu X.Terminal sliding mode control of mimo linear systems[J].IEEE Transactions on Circuits and Systems Ⅰ:Fundamental Theory and Applications,1997,44(11):1065-1070.

共引文献16

同被引文献19

  • 1马媛,杨树兴,张成.基于UKF的组合导航误差状态估计[J].华中科技大学学报(自然科学版),2009,37(S1):280-283. 被引量:3
  • 2周宏仁.机动目标“当前”统计模型与自适应跟踪算法[J].航空学报,1983,4(1):73-86.
  • 3Djapic V,Nad D,Ferri G,et al.Novel method for underwater navigation aiding using a companion underwater robot as a guiding platforms[C]//Proceedings of Oceans2013,Bergen,Norway,10-13 June,2013,2013:1-10.
  • 4Hegrenas O,Gade K,Hagen O K,et at.Hunderwater transponder positioning and navigation of autonomous underwater vehicles[C]//Proceedings of Oceans 2009,26-29October,2009:1-7.
  • 5Morgado M,Oliveira P,Silvestre C.Tightly coupled ultrashort baseline and inertial navigation system for underwater vehicles:an experimental validation[J].Journal of Field Robotics,2013,30(1):142-170.
  • 6Geng Y,Sousa J.Hybrid derivative-free EKF for USBL/INS tightly-coupled integration in AUV[C]//Proceedings of International Conference on Autonomous and Intelligent Systems,21-23 June,2010.Povoa de Varzim:IEEE Computer Society,2010:1-6.
  • 7Pere R,David R,Emili H,et al.USBL/DVL navigation through delayed position fixes[C]//Proceedings of IEEE International Conference on Robotics and Automation,Shanghai,China,9-13 May,2011.[S.l.]:IEEE,2011:2344-2349.
  • 8Morgado M,Batista P,Oliveria P,et al.Position USBL/DVL sensor-based navigation filter in the presence of unknown ocean currents[J].Automatic,2011,47(12):2604-2614.
  • 9Arasaratnam I,Haykin S.Cubature Kalman filters[J].Automatic Control,2009,54(6):1254-1269.
  • 10边信黔,周佳加,严浙平,赵大威.基于EKF的无人潜航器航位推算算法[J].华中科技大学学报(自然科学版),2011,39(3):100-104. 被引量:8

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