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Study of Singular Spectrum Analysis as a data-driven technique for damage diagnosis. Comparison between the time or frequency domain

机译:奇异频谱分析作为一种数据驱动的损伤诊断技术的研究。时域或频域之间的比较

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摘要

Vibration-based Structural Health Monitoring methodologies have been developed in many different applications with the aim of damage diagnosis. Recently, purely data-driven methods have been gained popularity because these methods do not assume any linearity or model in their analysis. Data-driven methods use the measured vibration signals as data-input to extract features that can conclude obtain useful information for the damage diagnosis. In this work a methodology based on Singular Spectrum Analysis (SSA) technique is presented which decomposes the measured vibration responses in a certain number of principal components which reveal the rotational patterns at any frequency in the motion. One of the steps of the methodology is to create a reference state where the observations can be compared for damage assessment. The data used to create the reference state determines how the information is represented in the reference state and therefore how meaningful and informative are the feature vectors for damage assessment. This study presents of the effect of the data representation considered on the creation of the reference state when the data is introduced in the time or frequency domain. The results obtained are different depending on the signal representation and hence they should have different interpretation when the state is created based on vibratory signals represented in the time or frequency domain.
机译:基于振动的结构健康监测方法已经在许多不同的应用中得到开发,目的是进行损伤诊断。最近,纯数据驱动的方法已经普及,因为这些方法在其分析中不假定任何线性或模型。数据驱动的方法使用测得的振动信号作为数据输入,以提取特征,这些特征可得出结论,以获取对损伤诊断有用的信息。在这项工作中,提出了一种基于奇异频谱分析(SSA)技术的方法,该方法可以分解一定数量的主成分中测得的振动响应,从而揭示出运动中任何频率下的旋转模式。该方法的步骤之一是创建一个参考状态,在该状态下可以将观察结果进行比较以进行损害评估。用于创建参考状态的数据确定信息在参考状态下的表示方式,从而确定损伤评估的特征向量的意义和信息量。这项研究介绍了在时域或频域中引入数据时,所考虑的数据表示形式对参考状态创建的影响。所获得的结果取决于信号表示形式的不同,因此,当基于时域或频域中表示的振动信号创建状态时,它们应具有不同的解释。

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