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Improved Defect Detection of Guided Wave Testing Using Split-Spectrum Processing

机译:利用分流谱处理改进了引导波试验的缺陷检测

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摘要

Ultrasonic guided wave (UGW) testing is widely applied in numerous industry areas for the examination of pipelines where structural integrity is of concern. Guided wave testing is capable of inspecting long lengths of pipes from a single tool location using some arrays of transducers positioned around the pipe. Due to dispersive propagation and the multimodal behavior of UGW, the received signal is usually degraded and noisy, that reduce the inspection range and sensitivity to small defects. Therefore, signal interpretation and identifying small defects is a challenging task in such systems, particularly for buried/coated pipes, in that the attenuation rates are considerably higher compared with a bare pipe. In this work, a novel solution is proposed to address this issue by employing an advanced signal processing approach called “split-spectrum processing” (SSP) to minimize the level of background noise and enhance the signal quality. The SSP technique has already shown promising results in a limited trial for a bar pipe and, in this work, the proposed technique has been experimentally compared with the traditional approach for coated pipes. The results illustrate that the proposed technique significantly increases the signal-to-noise ratio and enhances the sensitivity to small defects that are hidden below the background noise.
机译:超声波引导波(UGW)测试广泛应用于众多工业领域,以考虑结构完整性令人担忧的管道。引导波测试能够使用位于管道周围的一些换能器阵列从单个工具位置检查长长的管道。由于分散传播和UGW的多模式行为,所接收的信号通常会降低和嘈杂,从而降低了对小缺陷的检查范围和敏感性。因此,信号解释和识别小缺陷是这种系统中的具有挑战性的任务,特别是对于掩埋/涂覆的管道,其与裸管相比,衰减速率相当高。在这项工作中,提出了一种新的解决方案来解决这个问题,通过采用称为“分频处理”(SSP)的高级信号处理方法来解决这个问题,以最小化背景噪声水平并增强信号质量。 SSP技术已经显示出有前途的结果,在对酒吧管道的有限试验中,在这项工作中,该技术已经与传统的涂层管道进行了实验。结果说明所提出的技术显着提高了信噪比,并增强了隐藏在背景噪声下方的小缺陷的敏感性。

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