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Identification of non-proportional viscous damping matrix of beams by finite element model updating

机译:用有限元模型更新识别梁非比例粘性阻尼矩阵

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摘要

A methodology has been proposed to estimate non-proportional viscous damping matrix of beams from measured complex eigendata using finite element model updating technique. Representation of damping through a proportional damping matrix ignoring the complexity of eigenvectors may not be appropriate when external damping devices are employed. The current literature of determination of non-proportional damping matrix demands measurement of a large number of complex modes which is extremely difficult in practice. A gradient based finite element model updating algorithm implementing inverse eigensensitivity method has been presented through a series of numerically simulated cantilever beams. The method can accurately predict the non-proportional damping matrix even if the measured eigenvectors are polluted with random noise. The novelty of the current method is that it can sustain a high level of modal and coordinate sparsity in measurement. The method assumes prior determination or updating of the mass and stiffness matrices.
机译:已经提出了一种方法来估计使用有限元模型更新技术从测量的复杂EIGENDATA估算光束的非比例粘性阻尼矩阵。通过比例阻尼矩阵阻尼的表示忽略了特征向量的复杂性可能不适合在采用外部阻尼装置时适当。目前关于非比例阻尼矩阵的确定的文献要求测量大量复杂模式,在实践中非常困难。通过一系列数值模拟的悬臂梁呈现了实现逆Eigensitivity方法的梯度基于的有限元模型更新算法。即使测量的特征向量被随机噪声污染,该方法也可以准确地预测非比例阻尼矩阵。目前方法的新颖性是它可以在测量中维持高水平的模态和坐标稀疏性。该方法假设质量和刚度矩阵的先前确定或更新。

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