DocumentCode :
1762495
Title :
Top Tension Control of a Flexible Marine Riser by Using Integral-Barrier Lyapunov Function
Author :
Wei He ; Chen Sun ; Ge, S.S.
Author_Institution :
Sch. of Autom. Eng. & Robot. Inst., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Volume :
20
Issue :
2
fYear :
2015
fDate :
42095
Firstpage :
497
Lastpage :
505
Abstract :
This paper presents a boundary controller for a flexible marine riser to suppress the riser´s vibration with a top tension constraint. The flexible marine riser is described by a distributed parameter system with a partial differential equation and four ordinary differential equations. The boundary controller is designed at the top boundary of the riser based on an integral-barrier Lyapunov function to suppress the riser´s tension at top. Adaptive control is designed when the system parametric uncertainty exists. With the proposed robust adaptive boundary control, uniformed boundedness under the ocean disturbance can be achieved. Stability analysis of the closed-loop system is given using the Lyapunov stability theory. Simulation results illustrate the effectiveness of the proposed boundary controller with top tension constraint.
Keywords :
Lyapunov methods; adaptive control; closed loop systems; control system synthesis; distributed parameter systems; marine control; partial differential equations; robust control; vibration control; Lyapunov stability theory; adaptive control design; boundary controller; closed-loop system stability analysis; distributed parameter system; flexible marine riser top tension control; integral-barrier Lyapunov function; marine riser tension suppression; marine riser vibration suppression; ocean disturbance; ordinary differential equations; partial differential equation; robust adaptive boundary control; system parametric uncertainty; Adaptive control; Distributed parameter systems; Educational institutions; Lyapunov methods; Oceans; Vibrations; Boundary control; distributed parameter system; flexible riser; flexible structures; vibration control;
fLanguage :
English
Journal_Title :
Mechatronics, IEEE/ASME Transactions on
Publisher :
ieee
ISSN :
1083-4435
Type :
jour
DOI :
10.1109/TMECH.2014.2331713
Filename :
6857412
Link To Document :
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