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Singular spectrum analysis for identifying structural nonlinearity using free-decay responses : Application detection and diagnosis in composite laminates

机译:利用自由衰减响应识别结构非线性的奇异谱分析:复合材料层板中的应用检测和诊断

摘要

This investigation considers a methodology for analysis of the vibratory response of composite laminate structures which is based on Singular Spectrum Analysis. Composite laminate structures generally demonstrate nonlinear dynamic behaviour as a result of their intrinsic material nonlinear nature. Since the nonlinearities on a number of occasions induce relativity small changes in the vibratory response which are difficult to identify, the raw measured dynamic responses have to be subjected to certain pre-treatment before it can be used for purposes of nonlinearity and damage analysis. To approach this problem this work investigates the effect of some key signal and transformation parameters, such as signal length and sampling frequency as well as the SSA window length on the performance of the methodology itself. The selection of these parameters has a direct influence on the damage sensitivity and the accuracy of the methodology. The variation of these parameters can produce radical changes on the clustering effect of the methodology and it is demonstrated that this might affect the results interpretation.
机译:这项研究考虑了一种基于奇异频谱分析的复合材料层合结构振动响应分析方法。复合材料层压结构由于其固有的材料非线性特性,通常表现出非线性动力学行为。由于在许多情况下,非线性会引起相对性,而振动响应的微小变化很难识别,因此,原始测量的动态响应必须经过一定的预处理,然后才能用于非线性和损伤分析。为了解决这个问题,这项工作研究了一些关键信号和变换参数(例如信号长度和采样频率以及SSA窗口长度)对方法本身性能的影响。这些参数的选择直接影响损伤的敏感性和方法的准确性。这些参数的变化可能会对方法的聚类效果产生根本性的变化,并证明这可能会影响结果的解释。

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