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Structural damage identification based on short-time temporal coherence using free-vibration response signals

机译:基于使用自由振动响应信号的短时时间相干性的结构损伤识别

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摘要

This paper proposes a short-time temporal coherence (STC)-based approach for linear and nonlinear structural damage identification. Two novel damage indices (damage detection index, DDI and damage localization index, DLI) are constructed based on the peak coherence function of the STC, which aims at detecting and localizing the damage using the measured free-vibration responses. Detailed numerical investigation was performed on a spring-damping-mass system. The results show that the two indices are sensitive to linear and nonlinear structural damage, and they can accurately identify the damage even with severely noise-polluted signals. An experimental study was conducted on a steel cantilever column to further validate the proposed approach. A typical nonlinear structural damage was simulated by loosening the bolts in the flange connection, which was successfully identified by the two indices. The results demonstrate that the proposed STC-based damage identification approach is effective to identify the bolt-loosening of structure with free-vibration response signals. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种用于线性和非线性结构损伤识别的基于时间的时间相干性(STC)。基于STC的峰相干功能构建了两种新的损伤指数(损伤检测指数,DDI和损坏定位指数,DLI),其旨在使用测量的自由振动响应来检测和定位损坏。在弹簧阻尼质量系统上进行了详细的数值研究。结果表明,这两个指数对线性和非线性结构损坏敏感,即使具有严重噪声污染的信号,它们也可以准确地识别损坏。在钢悬臂柱上进行实验研究,以进一步验证提出的方法。通过在法兰连接中松开螺栓来模拟典型的非线性结构损坏,这是由两个指数成功识别的螺栓。结果表明,所提出的基于STC的损伤识别方法是有效识别结构的螺栓松动与自由振动响应信号。 (c)2019年elestvier有限公司保留所有权利。

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