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OPERATIONAL MODAL ANALYSIS BASED LINEAR SYSTEM IDENTIFICATION OF SYSTEMS WITH ELASTO-PERFECTLY-PLASTIC NONLINEAR BEHAVIOUR

机译:基于弹性 - 完美塑料非线性行为的系统的操作模态分析

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Operational Modal Analysis (OMA) is widely used to identify the modal properties of systems under ambient vibrations or normal operating conditions. The fundamental assumption of existing OMA methods is that the system is linear and time-invariant. Civil engineering structures, however, often violate this assumption, especially, when their dynamic behaviour is influenced by various sources of nonlinearity such as; the hysteretic behaviour of structural elements, friction between sliding surfaces and softening of the soil-foundation system. Along these lines, this paper assesses the linear frequency and damping estimation performance of two correlation driven OMA methods applied to a nonlinear system with bilinear (i.e., elasto-perfectly-plastic) behaviour. This assessment of the estimation performance compares the OMA based estimates to theoretical values of equivalent linear frequency and viscous damping and discusses the discrepancies. It is found that the OMA methods provide reliable results for the investigated simulation system with nonlinear damping and stiffness, though, with a bias in the related frequency and damping estimates arising in the correlation function estimation. The bias is, however, relatively small.
机译:工作模态分析(OMA)被广泛用于识别在环境的振动或在正常工作条件的系统的模态特性。现有OMA方法的基本假设是,该系统是线性时不变。土木结构,然而,经常违反这个假设,特别是当他们的动态行为由非线性的各种来源的影响,如;结构元件的滞后行为,滑动表面和土壤基础系统的软化之间的摩擦。沿着这些线,本文评估了线性频率和两个相关从动OMA方法阻尼估计性能应用到非线性系统双线性(即,弹完全塑性)行为。估计性能的这种评估比较OMA基于估计来等效线性频率和粘滞阻尼的理论值,并讨论了差异。据发现,OMA方法提供了所研究的仿真系统可靠的结果具有非线性阻尼和刚度,但是,与在相关频率偏置和阻尼中的相关函数的估计所产生的估计。偏置然而,相对较小。

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