Three-Dimensional Vibrations Control Design for a Single Point Mooring Line System with Input Saturation

This paper presents a boundary control design for a single point mooring line system with input saturation in three-dimensional (3D) space. The system is described by some partial differential equations (PDEs) and ordinary differential equations (ODEs). The control strategy proposed in this paper at...

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Published inNeural Information Processing Vol. 10639; pp. 228 - 238
Main Authors Xiang, Weijie, He, Wei, He, Xiuyu, Xu, Shuanfeng, Li, Guang, Sun, Changyin
Format Book Chapter
LanguageEnglish
Published Switzerland Springer International Publishing AG 2017
Springer International Publishing
SeriesLecture Notes in Computer Science
Subjects
Online AccessGet full text
ISBN3319701355
9783319701356
ISSN0302-9743
1611-3349
DOI10.1007/978-3-319-70136-3_25

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Abstract This paper presents a boundary control design for a single point mooring line system with input saturation in three-dimensional (3D) space. The system is described by some partial differential equations (PDEs) and ordinary differential equations (ODEs). The control strategy proposed in this paper at the tip payload of the mooring line and the control design uses Lyapunov’s direct method (LDM) to ensure the stability of the system. In order to compensate the input saturation, we propose an auxiliary system. With the proposed boundary control, the mooring system’s uniform boundedness under the effect of external environment is obtained. The presented boundary control is implementable with feasible equipment because all information in the system can be gained and calculated through various sensors or by applying a backward difference algorithm. Simulation results are provided to prove that the controller is effective in regulating the vibration of the system.
AbstractList This paper presents a boundary control design for a single point mooring line system with input saturation in three-dimensional (3D) space. The system is described by some partial differential equations (PDEs) and ordinary differential equations (ODEs). The control strategy proposed in this paper at the tip payload of the mooring line and the control design uses Lyapunov’s direct method (LDM) to ensure the stability of the system. In order to compensate the input saturation, we propose an auxiliary system. With the proposed boundary control, the mooring system’s uniform boundedness under the effect of external environment is obtained. The presented boundary control is implementable with feasible equipment because all information in the system can be gained and calculated through various sensors or by applying a backward difference algorithm. Simulation results are provided to prove that the controller is effective in regulating the vibration of the system.
Author Sun, Changyin
He, Xiuyu
Li, Guang
Xu, Shuanfeng
He, Wei
Xiang, Weijie
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  surname: He
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  organization: School of Automation and Electrical Engineering, University of Science and Technology Beijing, Beijing, China
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Snippet This paper presents a boundary control design for a single point mooring line system with input saturation in three-dimensional (3D) space. The system is...
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proquest
SourceType Publisher
StartPage 228
SubjectTerms Boundary control
Distributed parameter system
Input saturation
Three-dimensional mooring line system
Title Three-Dimensional Vibrations Control Design for a Single Point Mooring Line System with Input Saturation
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