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Mahalanobis distance among the phase portraits as damage feature

机译:相像之间的马氏距离作为损伤特征

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摘要

A number of damage-sensitive features have been proposed based on the damage-induced changes in the phase portrait, reconstructed from the measured dynamic responses of structure. Of a number of alternatives, the change in phase space topology is the most widely acclaimed for assessment of structural health. In this study, a damage feature is proposed by contrasting the damaged phase portrait with the pristine one. The contrast is expressed using the Mahalanobis distance measure, which is remarkably simpler than the change in phase space topology in algorithmic aspect. The feature is referred as Mahalanobis distance among the phase portraits. The performance of the feature is demonstrated by its sensitivity and localization of damage. The noise immunity study reveals reasonable tolerance to the measurement noise. The feature is numerically illustrated on a shear building subjected to Lorentz chaotic excitations and natural wind excitations. The feature is experimentally verified in a railway bridge model subjected to moving wheel load of a model train. The results show the effectiveness of the feature for localizing both the support damage (as in bearing) and damage in the span. Simple analytical argument is also provided to link the phase portrait distortion with the extent and localization of damage(s).
机译:根据损伤引起的相像变化,提出了许多损伤敏感特征,这些特征是根据所测得的结构动态响应重建的。在许多替代方案中,相空间拓扑的变化是评估结构健康的最广受好评。在这项研究中,通过将损坏的相像与原始相对比,提出了损坏特征。使用马哈拉诺比斯距离测度来表达对比度,该测度比算法方面的相空间拓扑变化要简单得多。该特征被称为相像之间的马氏距离。该功能的性能通过其敏感性和损坏程度来证明。噪声抗扰性研究揭示了对测量噪声的合理容忍度。该特征在经受Lorentz混沌激发和自然风激发的剪力建筑上用数字表示。该特征已在模型火车的动轮载荷作用下的铁路桥梁模型中进行了实验验证。结果表明,该功能对于定位支撑损伤(如轴承)和跨度损伤都是有效的。还提供了简单的分析论据,以将相像畸变与损伤的程度和位置联系起来。

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