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A Switching Control Perspective on the Offshore Construction Scenario of Heavy-Lift Vessels

机译:重型舰艇海上施工场景的开关控制透视图

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Position control for heavy-lift construction vessels is crucial for safe operation during offshore construction. During the various phases of a typical offshore construction assignment, considerable changes in the dynamics of the crane-vessel system occur. Operational hazard was reported if such interchanging dynamics are not properly handled. However, to date and the best of our knowledge, no systematic control solution is reported considering multiphase offshore construction scenarios. This article proposes a switched dynamical framework to model the interchanging phases and to formulate a comprehensive position control solution for heavy-lift vessels. Stability and robustness against modeling imperfections and environmental disturbances are analytically assessed. The effectiveness of the solution is verified on a realistic heavy-lift vessel simulation platform; it is shown that the proposed switched framework sensibly improves accuracy and reduces hazard compared with a nonswitched solution designed for only one phase of the construction scenario.
机译:重型升降架建筑船舶的位置控制对于海上建设期间的安全运行至关重要。在典型的海上施工分配的各个阶段,发生起重机系统的动态的相当大的变化。如果未正确处理这种互换动态,则报告了操作危害。然而,迄今为止,我们的知识迄今为止,考虑到多相海上施工情景,没有报告系统控制解决方案。本文提出了一种改进的动态框架来模拟互换阶段,并为重型船舶制定全面的位置控制解决方案。分析评估了对模型缺陷和环境干扰的稳定性和鲁棒性。解决方案的有效性在现实的重型升降机仿真平台上验证;结果表明,与仅为施工场景的一个相位的非开关的解决方案相比,所提出的切换框架可显着提高精度并减少危险。

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