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Identification of Damping from Experimental Dynamic Stiffness Matrix: Error Analysis

机译:实验动态刚度矩阵阻尼识别:误差分析

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Some practical issues related to application of the dynamic stiffness matrix (DSM) based damping identification method to real life mechanical systems are studied in this paper. The DSM based direct damping matrix identification method was proposed to identify both the mechanism and spatial distribution of damping as a matrix of general function of frequency. The method obtains the damping matrix from the imaginary part of the DSM, which is computed by inverting the measured frequency response function matrix (FRM). The major issue regarding the feasibility of this method is how the errors in measured frequency response functions (FRF) affect the DSM, because it is known that the DSM is highly sensitive to errors that are present in the FRFs. In this paper, a detailed analytical and computational study is performed, which leads to a sound physical explanation of the high sensitivity of the DSM to measurement errors that was observed in earlier studies. A new and also important conclusion is that the leakage error drastically affects the accuracy of the DSM in addition to other common measurement errors. Based on the findings of this study, recommendations are made for future experimental implementations of the damping identification method.
机译:本文研究了与应用基于动态刚度矩阵(DSM)的阻尼识别方法的应用相关的一些实际问题。基于DSM基的直接阻尼矩阵识别方法旨在确定阻尼作为频率通用函数矩阵的阻尼机构和空间分布。该方法从DSM的虚部获得阻尼矩阵,其通过反转测量的频率响应函数矩阵(FRM)来计算。关于该方法的可行性的主要问题是测量频率响应函数(FRF)中的错误如何影响DSM,因为已知DSM对FRF中存在的错误非常敏感。在本文中,进行了详细的分析和计算研究,这导致对DSM对早期研究中观察到的测量误差的高灵敏度的声音解释。一个新的和重要的结论是,除了其他常见的测量误差之外,泄漏误差会大大影响DSM的准确性。基于本研究的调查结果,建议对未来的阻尼识别方法的实验实施。

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