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Robust mixed H2/H∞ active control for offshore steel jacket platform
This paper presents a robust mixed H 2 / H ∞ control method for wave-excited offshore jacket platforms. Its objective was to design a controller that minimizes the upper bound of the H 2 performance measure on platform dynamics satisfying some H ∞ norm bound constraint simultaneously. Based on mixed...
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Published in: | Nonlinear dynamics 2014-10, Vol.78 (2), p.1503-1514 |
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Main Author: | |
Format: | Article |
Language: | English |
Subjects: | |
Online Access: | Get full text |
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Summary: | This paper presents a robust mixed
H
2
/
H
∞
control method for wave-excited offshore jacket platforms. Its objective was to design a controller that minimizes the upper bound of the
H
2
performance measure on platform dynamics satisfying some
H
∞
norm bound constraint simultaneously. Based on mixed
H
2
/
H
∞
control theory and linear matrix inequality techniques, a novel approach to stabilize offshore platform vibration with constrained
H
2
/
H
∞
performances is proposed. Uncertainties of the wave excitation are considered in dynamic performance analysis of offshore platforms. A reduced mode offshore platform structure under wave excitation is analyzed, and simulations are used to verify the effectiveness of the proposed approach. Compared with existing
H
∞
control methods, the proposed approach makes a significant improvement for dynamic performances of offshore platforms under random wave excitation. |
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ISSN: | 0924-090X 1573-269X |
DOI: | 10.1007/s11071-014-1531-x |