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Photothermal image reconstruction in opaque media with virtual wave backpropagation

机译:虚拟波反向化的不透明介质中的光热图像重建

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摘要

Thermographic reconstruction of defects that lie in the bulk of a sample is a difficult task because entropy production during heat diffusion leads to information loss. To reconstruct defects one has to solve an inverse heat conduction problem. The quality of the reconstruction is closely related to the information content of the observed data set that is reflected by the decreasing ability to spatially resolve a defect with growing defect depth. In this work we show a 2D reconstruction of rectangular slots with different width-to-depth ratios in a metallic sample. For this purpose, we apply the virtual wave concept and incorporate positivity and sparsity as prior information to overcome the diffusion-based information loss partially. The reconstruction is based on simulated and experimental pulse thermography data. In the first reconstruction step, we compute a virtual wave field from the surface temperature data. This allows us, in the second step, to use ultrasonic backpropagation methods for image reconstruction.
机译:位于样本的大部分中的缺陷的热敏重建是一项艰巨的任务,因为热扩散过程中的熵产生导致信息丢失。重构缺陷必须解决反导热问题。重建的质量与观察到的数据集的信息内容密切相关,这些数据集被在空间地解析缺陷的能力下降的能力下降,以增加缺陷深度。在这项工作中,我们在金属样品中展示了具有不同宽度的宽度的矩形槽的2D重建。为此目的,我们应用虚拟波概念,并将积极和稀疏性结合在一起以克服基于扩散的信息损失部分。重建基于模拟和实验脉冲热成像数据。在第一重建步骤中,我们从表面温度数据计算虚拟波字段。这允许我们在第二步中,使用超声波反向化方法进行图像重建。

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