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Sliding mode control with mixed current and delayed states for offshore steel jacket platforms

journal contribution
posted on 2017-12-06, 00:00 authored by Baolin Zhang, Qing-Long Han, Xian-Ming Zhang, Xinghuo YuXinghuo Yu
This paper is concerned with active control for an offshore steel jacket platform subjected to wave-induced force and parameter perturbations. An uncertain dynamic model for the offshore platform is first established, where uncertainties not only on the natural frequency and the damping ratio of both the offshore platform and the active tuned mass damper (TMD) but also on the damping and stiffness of the TMD are considered. Then, by intentionally introducing a proper time delay into the control channel, a novel sliding mode control scheme is proposed. This scheme uses information about mixed current and delayed states. It is shown through simulation results that this scheme is more effective in both improving the control performance and reducing control force of the offshore platform than some existing ones, such as delay-free sliding mode control, nonlinear control, dynamic output feedback control, and delayed dynamic output feedback control. Furthermore, it is shown that the introduced time delay in this scheme can take values in different ranges while the corresponding control performance of the offshore platformis almost at the same level.

Funding

Other

History

Volume

22

Issue

5

Start Page

1769

End Page

1783

Number of Pages

15

eISSN

1558-0865

ISSN

1063-6536

Location

United States

Publisher

Institute of Electrical and Electronics Engineers

Language

en-aus

Peer Reviewed

  • Yes

Open Access

  • No

External Author Affiliations

Centre for Intelligent and Networked Systems (CINS); China Jiliang University; RMIT University; TBA Research Institute;

Era Eligible

  • Yes

Journal

IEEE transactions on control systems technology.

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