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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Ultrasonic nondestructive evaluation of highly scattering materials using adaptive filtering and detection
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Ultrasonic nondestructive evaluation of highly scattering materials using adaptive filtering and detection

机译:使用自适应滤波和检测对高散射材料进行超声无损评估

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摘要

Adaptive filtering and detection has been applied to the problem of detecting ultrasonic echo signals from test targets where the wanted signals are masked by coherent scattering from grain boundaries present in highly scattering materials. The filter is based on the normalized least mean square (LMS) error algorithm, and can be operated with either an independent reference signal or by using the delayed input signal as the reference. Tests made on a collection of 64 ultrasonic A-scans using the same processing parameters show that an up to 10 dB improvement in signal-to-noise ratio can typically be obtained. A cell-averaging constant false alarm rate (CFAR) detector is used to detect the signals automatically. The performance of the method is compared to that of split spectrum processing, both with and without polarity thresholding.
机译:自适应滤波和检测已应用于检测来自测试目标的超声回波信号的问题,在该目标中,所需信号被高散射性材料中存在的晶界的相干散射掩盖了。该滤波器基于归一化最小均方(LMS)误差算法,并且可以使用独立的参考信号或通过使用延迟的输入信号作为参考进行操作。使用相同的处理参数对64个超声波A扫描的集合进行的测试表明,通常可以将信噪比提高多达10 dB。单元平均恒定虚警率(CFAR)检测器用于自动检测信号。将该方法的性能与带或不带极性阈值的分离频谱处理的性能进行比较。

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