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Limits of Spatial Resolution for Thermography and Other Non-destructive Imaging Methods Based on Diffusion Waves

机译:基于扩散波的热成像和其他非破坏性成像方法的空间分辨率限制

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摘要

In this work the measured variable, such as temperature, is a random variable showing fluctuations. The loss of information caused by diffusion waves in non-destructive testing can be described by stochastic processes. In non-destructive imaging, the information about the spatial pattern of a samples interior has to be transferred to the sample surface by certain waves, e.g., thermal waves. At the sample surface these waves can be detected and the interior structure is reconstructed from the measured signals. The amount of information about the interior of the sample, which can be gained from the detected waves on the sample surface, is essentially influenced by the propagation from its excitation to the surface. Diffusion causes entropy production and information loss for the propagating waves. Mandelis has developed a unifying framework for treating diverse diffusion-related periodic phenomena under the global mathematical label of diffusion-wave fields, such as thermal waves. Thermography uses the time-dependent diffusion of heat (either pulsed or modulated periodically) which goes along with entropy production and a loss of information. Several attempts have been made to compensate for this diffusive effect to get a higher resolution for the reconstructed images of the samples interior. In this work it is shown that fluctuations limit this compensation. Therefore, the spatial resolution for non-destructive imaging at a certain depth is also limited by theory.
机译:在这项工作中,测量变量(例如温度)是显示波动的随机变量。在无损检测中由扩散波引起的信息损失可以用随机过程来描述。在非破坏性成像中,必须通过某些波,例如热波,将关于样品内部空间模式的信息传递到样品表面。在样品表面可以检测到这些波,并根据测量的信号重建内部结构。可以从样品表面上检测到的波中获得的有关样品内部的信息量基本上受其激发到表面的传播的影响。扩散导致传播波产生熵并损失信息。 Mandelis开发了一个统一的框架,用于在扩散波场(例如热波)的全局数学标记下处理与扩散有关的各种周期性现象。热成像技术使用随时间变化的热量扩散(周期性地脉冲或调制),伴随着熵的产生和信息的丢失。为了弥补这种扩散效应,已经进行了几次尝试,以使样本内部的重建图像获得更高的分辨率。这项工作表明,波动会限制这种补偿。因此,在一定深度的非破坏性成像的空间分辨率也受到理论的限制。

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