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首页> 外文期刊>Marine Structures >Sea state estimation based on vessel motion responses: Improved smoothness and robustness using Bezier surface and L1 optimization
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Sea state estimation based on vessel motion responses: Improved smoothness and robustness using Bezier surface and L1 optimization

机译:基于血管运动响应的海水估计:使用Bezier表面和L1优化提高平滑性和鲁棒性

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摘要

Floating structures oscillate in waves, where these wave-induced motions may be critical for various marine operations. An important consideration is thereby given to the sea states at the planning and operating stages for an offshore project. The most important information extracted from a sea state is the directional wave spectrum, indicating wave direction, significant wave height, and wave spectrum peak period. Among several available methods of measuring and estimating the directional wave spectrum, the wave buoy analogy technique based on vessel motion responses is an in situ and almost real-time solution without extra costs of devices. If the forms of the wave spectra are not predefined in the estimation, the method is called a nonparametric approach. Its most remarkable advantage is the flexible form, but the smoothness should be regulated. After the discrete Fourier transform has been applied to the measured vessel motions, smoothing is necessary. However, this process results in disturbed vessel cross-spectra and a lowpass characteristic of the windowing function. This paper presents a nonparametric approach for directional wave spectrum estimation based on vessel motion responses. It introduces novel smoothness constraints using Bezier surface and includes a more robust estimate using L1 optimization. Both techniques are applied to the wave buoy analogy for the first time. Numerical simulations are conducted to verify the proposed algorithm.
机译:浮动结构在波中振荡,这些波诱导的运动对于各种海洋操作可能是至关重要的。因此,在海上项目的规划和运营阶段向海州提供了一个重要的考虑因素。从海水状态提取的最重要的信息是方向波谱,指示波方向,显着波高和波谱峰值周期。在测量和估算方向波谱的几种可用方法中,基于血管运动响应的波浮标类比技术是原位和几乎实时解决方案,而无需设备的额外费用。如果在估计中不预定波谱的形式,则该方法称为非参数方法。其最具显着的优势是柔性形式,但应调节平滑度。在将离散的傅里叶变换应用于测量的血管运动后,是必要的平滑。然而,该过程导致血管交叉光谱的受干扰血频和窗口函数的低通特性。本文介绍了基于血管运动响应的定向波谱估计的非参数方法。它引入了使用Bezier表面的新颖性平滑约束,包括使用L1优化更强大的估计。这两种技术首次应用于波浮标类比。进行数值模拟以验证所提出的算法。

著录项

  • 来源
    《Marine Structures》 |2021年第3期|102904.1-102904.26|共26页
  • 作者单位

    Norwegian Univ Sci & Technol NTNU Dept Marine Technol NO-7491 Trondheim Norway|Ctr Res Based Innovat Marine Operat SFI MOVE Trondheim Norway;

    Norwegian Univ Sci & Technol NTNU Dept Marine Technol NO-7491 Trondheim Norway|Ctr Res Based Innovat Marine Operat SFI MOVE Trondheim Norway;

    Delft Univ Technol Fac Aerosp Engn Aerosp Mfg Technol NL-2629 HS Delft Netherlands;

    NTNU Ctr Autonomous Marine Operat & Syst NTNU AMOS Trondheim Norway|NTNU Dept Engn Cybernet NO-7491 Trondheim Norway;

    Norwegian Univ Sci & Technol NTNU Dept Marine Technol NO-7491 Trondheim Norway|Ctr Res Based Innovat Marine Operat SFI MOVE Trondheim Norway|NTNU Ctr Autonomous Marine Operat & Syst NTNU AMOS Trondheim Norway;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sea state estimation; Wave buoy analogy; Bezier surface; L1 optimization; Nonparametric estimation; Sparse regression;

    机译:海州估计;波浮标类比;贝塞尔表面;L1优化;非参数估计;稀疏回归;
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