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Split-spectrum processing technique for SNR enhancement of ultrasonic guided wave

机译:超声波引导波SNR增强分流谱处理技术

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摘要

AbstractUltrasonic guided wave (UGW) systems are broadly used in several branches of industry where the structural integrity is of concern. In those systems, signal interpretation can often be challenging due to the multi-modal and dispersive propagation of UGWs. This results in degradation of the signals in terms of signal-to-noise ratio (SNR) and spatial resolution. This paper employs the split-spectrum processing (SSP) technique in order to enhance the SNR and spatial resolution of UGW signals using the optimized filter bank parameters in real time scenario for pipe inspection. SSP technique has already been developed for other applications such as conventional ultrasonic testing for SNR enhancement. In this work, an investigation is provided to clarify the sensitivity of SSP performance to the filter bank parameter values for UGWs such as processing bandwidth, filter bandwidth, filter separation and a number of filters. As a result, the optimum values are estimated to significantly improve the SNR and spatial resolution of UGWs. The proposed method is synthetically and experimentally compared with conventional approaches employing different SSP recombination algorithms. The Polarity Thresholding (PT) and PT with Minimization (PTM) algorithms were found to be the best recombination algorithms. They substantially improved the SNR up to 36.9dB and 38.9dB respectively. The outcome of the work presented in this paper paves the way to enhance the reliability of UGW inspections.]]>
机译:<![cdata [ 抽象 超声波引导波(UGW)系统广泛用于结构完整性令人担忧的几个工业分支中。在这些系统中,由于UGWS的多模态和分散传播,信号解释通常可能是具有挑战性的。这导致在信噪比(SNR)和空间分辨率方面劣化信号。本文采用分流频谱处理(SSP)技术,以便在实时场景中使用优化的滤波器组参数来增强UGW信号的SNR和空间分辨率。已经为其他应用开发了SSP技术,例如SNR增强的传统超声波测试。在这项工作中,提供了调查,以阐明SSP性能对UGW的滤波器组参数值的灵敏度,例如处理带宽,过滤器带宽,过滤器分离和多个过滤器。结果,估计最佳值以显着提高UGWS的SNR和空间分辨率。与采用不同SSP重组算法的常规方法进行合成和实验,将该方法进行了实验。发现极性阈值(PT)和具有最小化(PTM)算法的PT是最好的重组算法。它们分别基本上改善了36.9dB和38.9dB的SNR。本文中提出的工作的结果铺平了提高UGW检查的可靠性的方法。 ]]>

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