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A comparison of deconvolution techniques for the ultrasonic nondestructive evaluation of materials

机译:反卷积技术在材料超声无损评估中的比较

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摘要

Several major deconvolution techniques commonly used for seismic applications are studied and adapted for ultrasonic NDE (nondestructive evaluation) applications. Comparisons of the relative merits of these techniques are presented based on a complete set of simulations on some real ultrasonic pulse echoes. Methods that rely largely on a reflection seismic model, such as one-at-a-time L/sub 1/ spike extraction and MVD (minimum variance deconvolution), are not suitable for the NDE applications discussed here because they are limited by their underlying model. L/sub 2/ and Wiener filtering, on the other hand, do not assume such a model and are, therefore, more flexible and suitable for these applications. The L/sub 2/ solutions, however, are often noisy due to numerical ill conditions. This problem is partially solved in Wiener filtering, simply by adding a constant desensitizing factor q. The computational complexities of these Wiener filtering-based techniques are relatively moderate and are, therefore, more suitable for potential real-time implementations.
机译:研究了几种通常用于地震应用的主要反卷积技术,并将其应用于超声NDE(无损评估)应用。这些技术的相对优点的比较是基于对某些实际超声脉冲回波的一组完整模拟进行的。主要依靠反射地震模型的方法,例如一次L / sub 1 /尖峰提取和MVD(最小方差反卷积),因此不适合此处讨论的NDE应用,因为它们受其基础的限制模型。另一方面,L / sub 2 /和维纳滤波不采用这种模型,因此更加灵活且适合于这些应用。但是,由于数字病状,L / sub 2 /解决方案通常很吵。仅通过添加恒定的脱敏因子q,就可以在维纳滤波中部分解决此问题。这些基于维纳滤波的技术的计算复杂性相对适中,因此更适合潜在的实时实现。

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