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首页> 外文期刊>Mechanical systems and signal processing >Cyclostationarity and the cepstrum for operational modal analysis of MIMO systems—Part Ⅱ: Obtaining scaled mode shapes through finite element model updating
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Cyclostationarity and the cepstrum for operational modal analysis of MIMO systems—Part Ⅱ: Obtaining scaled mode shapes through finite element model updating

机译:MIMO系统工作模态分析的循环平稳性和倒谱—第二部分:通过有限元模型更新获得缩放模式形状

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This paper presents a new technique for scaling mode shapes, obtained from cepstrum-based operational modal analysis (OMA) techniques, such as that described in the companion paper, using finite element model updating. This OMA technique estimated frequency response functions (FRFs) between a cyclostationary input and response measurements. If the input is frequentially white, the resulting FRFs can be obtained up to an overall scaling constant using the in-band poles and zeros identified in the OMA process and employing the response autospectrum as a reference to correct for the effect of out of band modes. In this way, the mode shapes would be scaled correctly relative to each other but would still have arbitrary overall magnitude. If the input is not white, then no reference is available to correct FRF regenerated from in-band poles and zeros, and so these FRFs will exhibit both an overall slope resulting from the effect of out-of-band poles and zeros, and an arbitrary magnitude. This overall slope will differ between measurement locations so even the relative scaling between the mode shapes will be lost. This paper describes a simple technique for recovering both the relative and overall scaling of the FRFs, and hence the mode shapes, based on finite element model updating.
机译:本文介绍了一种用于缩放模式形状的新技术,该技术是从基于倒谱的操作模态分析(OMA)技术(如随附文件中所述)中使用有限元模型更新获得的。该OMA技术估计了循环平稳输入和响应测量之间的频率响应函数(FRF)。如果输入经常为白色,则可以使用在OMA过程中确定的带内极点和零点,并使用响应自动频谱作为参考来校正带外模式的影响,从而获得高达FRF的总比例常数。 。这样,模式形状将相对于彼此正确缩放,但仍具有任意的整体大小。如果输入不是白色,则没有参考可用于校正从带内极点和零点再生的FRF,因此这些FRF将同时显示出由于带外极点和零点的影响而产生的总体斜率,以及任意大小。测量位置之间的总斜率会有所不同,因此,甚至模式形状之间的相对比例也会丢失。本文介绍了一种基于有限元模型更新来恢复FRF的相对和整体缩放比例以及模式形状的简单技术。

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