Cross-correlation vibro-acoustic modulation method for damage detection

IF 5.7 2区 工程技术 Q1 ENGINEERING, MULTIDISCIPLINARY
Dong Liu, D. Donskoy
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引用次数: 0

Abstract

The vibroacoustic modulation (VAM) method distinguishes itself from other linear or nonlinear acoustic structure health monitoring methods due to its advantages of high sensitivity, relatively simple implementation, and the capability to detect defects in complex structures. However, the damaged index of VAM—modulation index, which is used for quantifying the damage severity, is highly influenced by the frequency of the probe wave. To increase the reliability and robustness of the VAM method, researchers modified it by replacing the single harmonic probe wave with a chirp signal. The instantaneous frequency of the chirp signal linearly increases with time, allowing the modified VAM method to access the broadband frequency range in a relatively short amount of time. However, the sideband that attributes to the acoustic nonlinearity of the defect would be overwhelmed by the broadband frequency content of the probe wave. Hence, a different algorithm is needed to process the received signal of the modified VAM method. Previous studies have employed short-time Fourier transform, wavelet transform, Hilbert transform, and synchronous demodulation for this purpose. Yet, these signal processing methods do not take into account affection of the phase difference between the probe and pump waves to the final result. To address this issue, this paper proposes using a cross-correlation (CC) approach. The performance of the proposed CC approach and existing methods were compared using simulation and experimental testing, evaluating their ability to detect acoustic nonlinearity.
损伤检测的交叉相关振声调制方法
振动声调制(VAM)方法以其灵敏度高、实现相对简单、能够检测复杂结构缺陷等优点区别于其他线性或非线性声结构健康监测方法。然而,用于量化损伤严重程度的vam -调制指数的损伤指数受探测波频率的影响很大。为了提高VAM方法的可靠性和鲁棒性,研究人员对其进行了改进,将单谐波探测波替换为啁啾信号。啁啾信号的瞬时频率随时间线性增加,允许改进的VAM方法在相对较短的时间内进入宽带频率范围。然而,由于缺陷的声学非线性,边带将被探测波的宽带频率内容所淹没。因此,需要一种不同的算法来处理改进的VAM方法的接收信号。以往的研究主要采用短时傅立叶变换、小波变换、希尔伯特变换和同步解调等方法。然而,这些信号处理方法没有考虑到探测波和泵浦波之间的相位差对最终结果的影响。为了解决这个问题,本文建议使用相互关联(CC)方法。通过仿真和实验测试,比较了所提出的CC方法和现有方法的性能,评估了它们检测声学非线性的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
12.80
自引率
12.10%
发文量
181
审稿时长
4.8 months
期刊介绍: Structural Health Monitoring is an international peer reviewed journal that publishes the highest quality original research that contain theoretical, analytical, and experimental investigations that advance the body of knowledge and its application in the discipline of structural health monitoring.
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