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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Minimum variance ultrasonic imaging applied to an in situ sparse guided wave array
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Minimum variance ultrasonic imaging applied to an in situ sparse guided wave array

机译:最小方差超声成像应用于原地稀疏导波阵列

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摘要

Ultrasonic guided wave imaging with a sparse, or spatially distributed, array can detect and localize damage over large areas. Conventional delay-and-sum images from such an array typically have a relatively high noise floor, however, and contain artifacts that often cannot be discriminated from damage. Considered here is minimum variance distortionless response (MVDR) imaging, which is a variation of delay-and-sum imaging whereby weighting coefficients are adaptively computed at each pixel location. Utilization of MVDR significantly improves image quality compared with delay-and-sum imaging, and additional improvements are obtained from incorporation of a priori scattering information in the MVDR method, use of phase information, and instantaneous windowing. Simulated data from a through-hole scatterer are used to illustrate performance improvements, and a performance metric is proposed that allows for quantitative comparisons of images from a known scatterer. Experimental results from a through-hole scatterer are also provided that illustrate imaging efficacy.
机译:具有稀疏或空间分布的阵列的超声波导波成像可以检测并定位大面积的损坏。然而,来自这种阵列的常规延迟和图像通常具有相对较高的本底噪声,并且包含通常无法将其与损坏区分开的伪像。这里考虑的是最小方差无失真响应(MVDR)成像,它是延迟和成像的一种变体,借此加权系数可在每个像素位置自适应地计算。与延迟总和成像相比,MVDR的使用显着改善了图像质量,并且通过将先验散射信息纳入MVDR方法,使用相位信息和即时窗口化,获得了其他改进。来自通孔散射体的模拟数据用于说明性能改进,并且提出了一种性能指标,该指标可对来自已知散射体的图像进行定量比较。还提供了来自通孔散射体的实验结果,这些结果说明了成像效果。

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