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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Minimum-Variance Imaging in Plates Using Guided-Wave-Mode Beamforming
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Minimum-Variance Imaging in Plates Using Guided-Wave-Mode Beamforming

机译:使用导波模式波束形成的板中最小方差成像

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This article presents improvements to ultrasonic imaging of solid platelike structures using the minimum-variance distortionless response (MVDR) beamforming processor. The primary application of this work is in the nondestructive testing (NDT) of platelike components that are widely used in aerospace, marine, and civil structures. The study proposes a new set of weights, or MVDR replica vectors, that are based on the physics of the propagating Lamb modes, including the symmetric mode S0, the antisymmetric mode A0, and the shear horizontal mode SH0. Numerical results show that these wave-mode weights, combined with geometrical spreading, improve the focus of the array by increasing the dynamic range and the spatial resolution of the image. In addition, quite dramatic improvements in image quality are achieved by combining, or compounding, the multiple Lamb modes naturally present in the plate in both transmission and reflection. As shown in recent work applied to bulk waves in 3-D solids, the compounding of Lamb modes in plates increases the array gain without increasing its physical aperture.
机译:本文介绍了使用最小方差无失真响应(MVDR)波束成形处理器对固态板状结构进行超声成像的改进。这项工作的主要应用是广泛用于航空,海洋和民用建筑的板状部件的无损检测(NDT)。该研究提出了一组新的权重或MVDR复制矢量,它们基于传播的Lamb模式的物理原理,包括对称模式S0,反对称模式A0和剪切水平模式SH0。数值结果表明,这些波模式权重与几何扩展相结合,可以通过增加图像的动态范围和空间分辨率来改善阵列的焦点。另外,通过组合或复合在透射和反射中自然存在于印版中的多个Lamb模式,可以实现图像质量的显着改善。如最近应用于3-D固体中的体波的工作中所示,板中Lamb模式的复合在不增加其物理孔径的情况下增加了阵列增益。

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