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An investigation on the capability of proper orthogonal modes in determining the natural frequencies and damping ratios of linear structural systems

机译:关于确定线性结构系统的固有频率和阻尼比的适当正交模式的研究

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摘要

The method of Proper Orthogonal Decomposition (POD) is one of the popular techniques used in structural dynamics. Unlike Linear Natural Modes (LNMs), Proper Orthogonal Modes (POMs) derived from the POD method, depend on the excitation loads in addition to the mass and stiffness of the dynamical system. According to the various researches in establishing a general connection between POMs and their respective LNMs, it has been found that except in some special cases, the natural system mode shapes cannot be extracted from the POMs. Despite efforts to find the general relation between POMs and LNMs, the use of POMs in the determination of natural frequencies and damping ratios has received less attention. This paper aims to use the POMs as a modal analysis tool to extract the natural frequencies and damping ratios of linear dynamical systems from their experimental vibrational responses. For this purpose, a POD-based algorithm is proposed to achieve this objective. In the mentioned methodology, at first, the equation of motion of a MDOF system is decomposed into several SDOF equations using proper orthogonal modes. Then the responses of the SDOF models are calculated in proper modal coordinates. Finally, the Power Spectrum Density (PSD) and the Auto Correlation Function (ACF) of their responses are used to determine the natural frequencies and damping ratios, respectively. The accuracy and precision of the results are evaluated by numerical and experimental validation. Two different conventional loading states, including impulse loads and ambient vibrations, are studied. Good agreement was observed between the POD-based results and those obtained from the FE and two other conventional operational modal analysis (OMA) methods. Also, it was found that in the modal identification process by POD-based algorithm, the noise effects are transmitted to the latest proper modes, so in noisy conditions, the accuracy of the modal characteristics corresponding to the primary natural modes will not be affected. Some other findings of this research will be presented at the end of the article.
机译:适当的正交分解(POD)的方法是结构动态中使用的流行技术之一。与线性自然模式(LNMS)不同,除了动态系统的质量和刚度之外,源自POD方法的适当正交模式(POMS)取决于激励负载。根据在POM和各自的LNM之间建立一般连接的各种研究,已经发现除了在一些特殊情况下,无法从POMS中提取自然系统模式形状。尽管努力寻找POMS和LNM之间的一般关系,但在确定自然频率和阻尼比率时使用POMS的关注。本文旨在使用POM作为模态分析工具,以从其实验振动响应中提取线性动力系统的自然频率和阻尼比率。为此目的,提出了一种基于POD的算法来实现这一目标。在提到的方法中,首先,使用适当的正交模式将MDOF系统的运动的方程分解成几个SDOF方程。然后在适当的模态坐标中计算SDOF模型的响应。最后,使用它们的响应的功率谱密度(PSD)和自动相关函数(ACF)来分别确定自然频率和阻尼比率。通过数值和实验验证评估结果的准确性和精度。研究了两个不同的传统装载状态,包括脉冲载荷和环境振动。在基于POD的结果和从Fe和另外两种常规操作模态分析(OMA)方法中获得的结果之间观察到良好的一致性。此外,发现在基于POD的算法的模态识别过程中,噪声效应被传输到最新的正确模式,因此在嘈杂的条件下,对应于主自然模式的模态特性的准确性不会受到影响。本研究的其他一些发现将在文章的末尾提出。

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