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Enhanced Proper Orthogonal Decomposition for the Modal Analysis of Homogeneous Structures

机译:均质结构模态分析的增强正确正交分解

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摘要

Proper orthogonal decomposition (POD) is studied in an effort to increases its applicability as a modal analysis tool. A modification is proposed to make better use of spatial resolution and to accommodate arbitrary spacing in the discretization. The theory for this modification is rooted in the discrete approximation of the integral orthogonality condition for continuous normal modes. The modified POD is applied to a finite element beam and an experimental beam sensed with accelerometers, and the resulting proper orthogonal modes (POMs) are compared to the theoretical modes of the beam. The POMs are used as a basis for decomposing the signal ensemble into proper modal coordinates. The proper modal coordinates are used to evaluate the POMs and to match modes with modal frequencies and damping.
机译:为了提高其作为模态分析工具的适用性,对适当的正交分解(POD)进行了研究。提出了一种修改方案,以更好地利用空间分辨率并适应离散化过程中的任意间距。这种修改的理论基于连续法线模式的积分正交条件的离散逼近。将修改后的POD应用于有限元光束和用加速度计感测的实验光束,并将所得的适当正交模式(POM)与光束的理论模式进行比较。 POM用作将信号集合分解为适当的模态坐标的基础。适当的模态坐标可用于评估POM,并使模式与模态频率和阻尼相匹配。

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