基于同步压缩小波变换相干性的同源声发射信号识别理论与实验研究

Jingkai Wang, L. Huo, Chunguang Liu, Gangbing Song
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引用次数: 0

摘要

声发射(AE)技术因其定位结构损伤的能力而受到广泛的研究。然而,声发射信号到达点的选择和非同源声发射信号的存在会显著影响损伤的定位精度。在以往的研究中,我们采用同步压缩小波变换(SWT)来提取准确的到达点,但在提取过程中忽略了非同源信号的存在。针对这一局限性,本文提出了同步压缩小波变换相干性方法,通过识别同源信号和抑制频谱泄漏来提高精度。与之前使用的小波变换相干性方法相比,SWTC方法利用小波变换得到的压缩小波系数可以构成更明确的声发射信号相干图。这种清晰的相干图有助于减少观察相干性时主观因素的影响,提高同源信号的识别精度。通过钢管和混凝土梁的实验验证了该方法的有效性。结果表明,该方法能够准确识别同源声发射信号,有效地提高了不同信号密度、定位距离和材料的定位精度。
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Theoretical and Experimental Study on Homologous Acoustic Emission Signal Recognition Based on Synchrosqueezed Wavelet Transform Coherence
The acoustic emission (AE) technique has been widely investigated for its ability to locate damage in structures. However, the selection of the arrival point of AE signals and the existence of nonhomologous AE signals can significantly affect the location accuracy of damages. The synchrosqueezed wavelet transform (SWT) was used in our previous research to pick the accurate arrival point, but the existence of the nonhomologous signals was neglected in the picking process. To address this limitation, the synchrosqueezed wavelet transform coherence (SWTC) method is proposed to improve the accuracy by recognizing homologous signals and suppressing the spectral leakage in this paper. Compared with the wavelet transform coherence (WTC) method previously used, the SWTC method using the squeezing wavelet coefficients obtained by the SWT can constitute a more explicit coherence graph of AE signals. This clear coherence graph can help reduce the effect of subjective factors in observing the coherence and improve the recognition accuracy of homologous signals. The effectiveness of the proposed method is experimentally verified on a steel pipe and a concrete beam. The results demonstrate that the SWTC accurately identifies homologous AE signals and effectively improves the localization accuracy across different signal densities, localization distances, and materials.
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