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通过扩散超声信号的局部时间相干性检测结构损伤。

Detection of structural damage from the local temporal coherence of diffuse ultrasonic signals.

作者信息

Michaels Jennifer E, Michaels Thomas E

机构信息

Georgia Institute of Technology, School of Electrical and Computer Engineering, Atlanta, GA 30332-0250, USA.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2005 Oct;52(10):1769-82. doi: 10.1109/tuffc.2005.1561631.

Abstract

Permanently mounted ultrasonic transducers have the potential to interrogate large areas of a structure, and thus be effective global sensors for structural health monitoring. Recorded signals, although very sensitive to damage, are long, complex, and difficult to interpret compared to pulse echo and through transmission signals customary for nondestructive testing. These diffuse signals also are quite sensitive to environmental effects such as temperature and surface condition changes. Waveform comparison methods such as time domain differencing and spectral analysis, although effective for detecting changes, are generally unsuccessful in discriminating damage from environmental effects. This paper considers the local temporal coherence as another means of comparing two waveforms in order to provide a quantitative measure of the change in shape of a signal compared to a reference as a function of time from transmit. Experimental results show that the local temporal coherence is effective in discriminating structural damage from both temperature changes and modest changes in surface conditions; results are compared to those obtained from time domain and spectrogram differencing. The advantages of this methodology are the simplicity of the transducers, the applicability to a wide range of structures, and the straightforward signal processing.

摘要

永久安装的超声换能器有潜力探测结构的大片区域,因此可成为用于结构健康监测的有效的整体传感器。记录的信号尽管对损伤非常敏感,但与无损检测中常用的脉冲回波和穿透传输信号相比,其信号长、复杂且难以解读。这些散射信号对温度和表面状况变化等环境影响也相当敏感。诸如时域差分和频谱分析等波形比较方法,虽然对检测变化有效,但在区分损伤和环境影响方面通常并不成功。本文将局部时间相干性视为比较两个波形的另一种手段,以便提供一个信号形状相对于参考信号随发射后时间变化的定量度量。实验结果表明,局部时间相干性在区分结构损伤与温度变化及表面状况的适度变化方面是有效的;将结果与从时域和频谱图差分获得的结果进行了比较。该方法的优点是换能器简单、适用于广泛的结构以及信号处理直接。

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