引用本文:赵志甲,郭芳,刘屿,吴忻生,邬依林.海洋柔性立管输出反馈边界控制[J].控制理论与应用,2017,34(2):205~214.[点击复制]
ZHAO Zhi-jia,GUO Fang,LIU Yu,WU Xin-sheng,Wu Yi-lin.Output feedback boundary control of a flexible marine riser[J].Control Theory and Technology,2017,34(2):205~214.[点击复制]
海洋柔性立管输出反馈边界控制
Output feedback boundary control of a flexible marine riser
摘要点击 2705  全文点击 2786  投稿时间:2016-04-06  修订日期:2016-10-09
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DOI编号  10.7641/CTA.2017.60198
  2017,34(2):205-214
中文关键词  海洋立管  内流动力学  边界控制  输出反馈控制  适定性
英文关键词  marine risers  internal fluid dynamics  boundary control  output feedback control  wellposedness
基金项目  国家自然科学基金;其它
作者单位E-mail
赵志甲 华南理工大学自动化科学与工程学院 zhao.zhijia@mail.scut.edu.cn 
郭芳 华南理工大学自动化科学与工程学院  
刘屿* 华南理工大学自动化科学与工程学院 auylau@scut.edu.cn 
吴忻生 华南理工大学自动化科学与工程学院  
邬依林 华南理工大学自动化科学与工程学院  
中文摘要
      针对耦合内流动力学的海洋柔性立管系统, 为了提高其振动控制品质, 结合Lyapunov直接法、边界控制技术和高增益观测器设计了输出反馈边界控制和干扰观测器, 用以抑制结构振动偏移量和减弱外部环境干扰载荷的影响. 其后, 证明了闭环系统解的存在性、唯一性和收敛性及闭环状态的一致有界性. 此外, 本文的控制设计和稳定性分析是基于立管的原始无穷维动力学进行的, 因此关于模型截断法的控制溢出问题将不会产生. 最后仿真结果验证了本文所设计的输出反馈边界控制器能有效抑制柔性立管的振动偏移量.
英文摘要
      For improving the vibration control performance of a marine riser coupled with the internal fluid dynamics, an output feedback boundary control with disturbance observer is designed to suppress the riser''s vibration displacement and mitigate the effects of the external environment disturbance by integrating Lyapunov''s direct method、boundary control technique and high-gain observers. With the proposed output feedback boundary control, the existence, uniqueness and convergence of the solution for the closed-loop riser system and the boundedness of all closed-loop signals are proven. In addition, the control design and stability analysis are carry out on the basis of the original infinite dimensional model without any discretisation or simplification of the dynamics in the time and space, thus the control spillover problem associated with the traditional truncated model-based methods will not arise. In the end, simulation results indicate that the proposed output feedback boundary control can effectively regulate the flexible riser''s vibration despite the existence of system states obtained inaccurately.