基于iEEMD的Hilbert Huang变换在波浪激励下检测固定海上导管架平台损坏引起的瞬时频率退化

Nguyen Thanh Trung, Nguyen Huu Hung, Thai Thi Kim Chi, Nguyen Duc thi Thu Dinh, Bui Ngoc Dung, Vu Dan Chinh
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引用次数: 2

摘要

在海上固定导管架平台的在线结构健康监测中,确定结构因损伤引起的随时间退化是维护策略中最重要的一步。本文提出了基于iEEMD(改进的集合经验模态分解)算法的Hilbert Huang变换方法,用于识别随机波激励下海上固定结构损伤引起的瞬时固有频率退化。为了抑制模态混叠,提出了iEEMD算法,并将其应用于海上结构在大频率波浪荷载作用下的大响应数据的自适应处理。本文在波浪箱中对海上结构进行了振动响应测量实验。对基于iEEMD的Hilbert Huang方法识别的基频进行了评估,并与特征值分析的数值模型结果进行了比较。主要结果表明,基于iEEMD的Hilbert Huang变换技术可以成功识别波浪荷载作用下海上固定导管架平台支撑损伤引起的瞬时频率退化和非线性时变行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of the instantaneous frequency degradation due to damages of a fixed offshore jacket platform using the iEEMD‐based Hilbert Huang transform under a wave excitation
In online structural health monitoring of the fixed offshore jacket platform, the determination of the time‐dependent degradation of structures due to damages is the most important step in a maintenance strategy. This paper presents the application of the Hilbert Huang transform method based on the iEEMD (improved ensemble empirical mode decomposition) algorithm to identify the instantaneous natural frequency degradation due to damages of the fixed offshore structure under the random wave excitation. The iEEMD algorithm is proposed to restrain the mode mixing and used to adaptively process the big response data of the offshore structure during the wave loading with a wide frequency range. The vibration response measurement experiment for the offshore structure was conducted in a wave tank in this study. The identified fundamental natural frequencies by the iEEMD‐based Hilbert Huang method were evaluated and compared with results of the numerical model of the eigenvalue analysis. The main result demonstrates that the instantaneous frequency degradation and nonlinear time‐varying behavior due to the brace damage of the fixed offshore jacket platform can be successfully identified by the iEEMD‐based Hilbert Huang transform technique under a wave load.
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