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Robustifying Dynamic Positioning of Crane Vessels for Heavy Lifting Operation

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摘要 Construction crane vessels make use of dynamic positioning(DP)systems during the installation and removal of offshore structures to maintain the vessel’s position.Studies have reported cases of instability of DP systems during offshore operation caused by uncertainties,such as mooring forces.DP"robustification"for heavy lift operations,i.e.,handling such uncertainties systematically and with stability guarantees,is a long-standing challenge in DP design.A new DP method,composed by an observer and a controller,is proposed to address this challenge,with stability guarantees in the presence of uncertainties.We test the proposed method on an integrated cranevessel simulation environment,where the integration of several subsystems(winch dynamics,crane forces,thruster dynamics,fuel injection system etc.)allow a realistic validation under a wide set of uncertainties.
出处 《IEEE/CAA Journal of Automatica Sinica》 SCIE EI CSCD 2021年第4期753-765,共13页 自动化学报(英文版)
基金 supported by the Program of China Scholarship Council(CSC)(20167720003) the Special Guiding Funds Double First-Class(3307012001A) the Natural Science Foundation of China(62073074)。
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