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A rapid approach to speckle noise reduction in ultrasonic non-destructive evaluation using matched filters

机译:使用匹配滤波器在超声非破坏性评估中快速减少斑点噪声的方法

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In this paper, we present a rapid technique to reduce the speckle noise in ultrasonic non-destructive evaluation (NDE) and enhance the image quality using matched filters. This method implicitly explores the signatures and profiles of echoes from legitimate defects and echoes from random reflectors, uses the temporal and spectral distinction to design the filter, and utilizes a particle swarm optimization (PSO) paradigm to optimize the filter parameters with an objective to maximize the output signal-to-noise ratio (SNR). An optimized matched filter approximating the desired defect echoes is then applied to the received A-scan waveforms. Experiments with a 128-element 5MHz transducer on a mild steel sample are conducted. It has been demonstrated that clutter is significantly reduced and the image SNR is improved by more than 20dB when the matched filter is applied to A-scan waveforms prior to image formation. Given the fact that the matched filter can be implemented in real-time, the great performance advantages are obtained with extremely low extra computational cost.
机译:在本文中,我们提出了一种快速的技术来减少超声无损评估(NDE)中的斑点噪声,并使用匹配的滤波器提高图像质量。该方法隐式地探索合法缺陷的回波的特征和轮廓以及随机反射器的回波的特征,利用时间和光谱差异来设计滤波器,并利用粒子群优化(PSO)范式来优化滤波器参数,从而最大程度地实现目标。输出信噪比(SNR)。然后,将逼近所需缺陷回波的优化匹配滤波器应用于接收到的A扫描波形。使用低碳钢样品上的128元素5MHz换能器进行了实验。已经证明,当在图像形成之前将匹配滤波器应用于A扫描波形时,杂波将大大减少,并且图像SNR会提高20dB以上。考虑到可以实时实现匹配滤波器的事实,以极低的额外计算成本获得了巨大的性能优势。

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