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A Robust Approach to Optimal Matched Filter Design in Ultrasonic Non-Destructive Evaluation (NDE)

机译:超声波非破坏性评估中最佳匹配滤波器设计的强大方法(NDE)

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The matched filter was demonstrated to be a powerful yet efficient technique to enhance defect detection and imaging in ultrasonic non-destructive evaluation (NDE) of coarse grain materials, provided that the filter was properly designed and optimized. In the literature, in order to accurately approximate the defect echoes, the design utilized the real excitation signals, which made it time consuming and less straightforward to implement in practice. In this paper, we present a more robust and flexible approach to optimal matched filter design using the simulated excitation signals, and the control parameters are chosen and optimized based on the real scenario of array transducer, transmitter-receiver system response, and the test sample, as a result, the filter response is optimized and depends on the material characteristics. Experiments on industrial samples are conducted and the results confirm the great benefits of the method.
机译:匹配的过滤器被证明是一种强大而有效的技术,可以提高粗晶材料超声波无损评估(NDE)中的缺陷检测和成像,条件是滤波器被适当设计和优化。在文献中,为了准确地近似缺陷回波,设计利用了真正的激励信号,这使得在实践中实现耗时和更直接的实施。在本文中,我们使用模拟激励信号提出了一种更强大的匹配滤波器设计的方法,并根据阵列传感器,发射机 - 接收器系统响应和测试样本的实际情况来选择和优化控制参数结果,优化滤波器响应并取决于材料特性。进行了工业样品的实验,结果证实了该方法的大益处。

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