DocumentCode
2430106
Title
Compensation of the nonlinear effects on a hydrostatic driver for the Keel system in a yacht using bilinear system
Author
Park, Rai-Wung
Author_Institution
Daebul Univ., Chunnam
fYear
2007
fDate
17-20 Oct. 2007
Firstpage
1567
Lastpage
1572
Abstract
Technical systems have almost nonlinear system behaviors. For the descriptions of their dynamical causes and effects on system, the physical information, which is concerned as a nonlinear mathematic model, has been used. But the corresponding equations are generally not easy to solve in complete form or their solutions are so complicated to see through the coherence. A common way to settle such a problem is to linearize system exactly in a state space or on a operating points with Taylor´s series approximately. An advanced method to an approximation is a bilinear system that offers global separations principle. In this paper, an extended application of this theory is given in a modeling and control on the hydrostatic driver for the keel system in a yacht that mostly have not only advantage of high performance, small volume of building and weight but also high nonlinear behavior.
Keywords
bilinear systems; boats; cause-effect analysis; compensation; hydrostatics; nonlinear control systems; nonlinear equations; state-space methods; Taylor series; bilinear system approximation; compensation; dynamical causes; dynamical effects; global separations principle; hydrostatic driver; keel system; nonlinear effects; nonlinear mathematic model; nonlinear system behaviors; state space; yacht; Boats; Centralized control; Control design; Control systems; Couplings; Engine cylinders; Nonlinear control systems; Nonlinear systems; Robots; Torque control; Compensation; Keel; Nonlinearity; Yacht; bilinear System; hydrostatic Driver;
fLanguage
English
Publisher
ieee
Conference_Titel
Control, Automation and Systems, 2007. ICCAS '07. International Conference on
Conference_Location
Seoul
Print_ISBN
978-89-950038-6-2
Electronic_ISBN
978-89-950038-6-2
Type
conf
DOI
10.1109/ICCAS.2007.4406589
Filename
4406589
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