论文标题

在0.25-6 THZ范围内,从THZ时域图像中删除THZ时域图像的梁形效应和噪声

Beam-Shape Effects and Noise Removal from THz Time-Domain Images in Reflection Geometry in the 0.25-6 THz Range

论文作者

Ljubenovic, Marina, Artesani, Alessia, Bonetti, Stefano, Traviglia, Arianna

论文摘要

恢复高分辨率超光谱(HS)图像的越来越多的需求正在确定对基于计算机视觉的处理的日益依赖,以增强图像内容的清晰度。实际上,HS图像可能会遭受由仪器限制引起的降解效应或人工制品。本文着重于在反射几何形状中的Terahertz时域光谱(THZ-TDS)图像中降低降解效应,频率依赖的模糊和噪声的过程。它描述了以前被证明对恢复THZ-TDS图像在传输几何形状中的恢复有效的联合脱张和脱氧方法的应用,但从未在反射方式中进行过测试。在大多数情况下,这种模式通常是唯一可以有效使用的模式,例如,在分析THZ范围内不透明的物体时,或者不能从其位置(例如博物馆)(例如文化兴趣的物体)流离失所。与传输模式相比,反射几何形状引入了现有文献中忽略的THZ数据的进一步失真。在这项工作中,我们成功地实施了均匀形状样品(当代1欧元的硬币和镶嵌吊坠)和带有表面上不均匀的浮雕和腐蚀产物的样品的均匀形状样品(现代1欧元硬币和镶嵌吊坠)的图像,这使得对象的分析使物体特别复杂(古罗马银币)。该研究表明,图像处理在0.25-6 THZ范围内恢复数据的能力,超过四个八度音阶,并为未来的文化遗产分析方法提供了基础,但使用远面的光谱仍未在文献中进行充分研究。

The increasing need of restoring high-resolution Hyper-Spectral (HS) images is determining a growing reliance on Computer Vision-based processing to enhance the clarity of the image content. HS images can, in fact, suffer from degradation effects or artefacts caused by instrument limitations. This paper focuses on a procedure aimed at reducing the degradation effects, frequency-dependent blur and noise, in Terahertz Time-Domain Spectroscopy (THz-TDS) images in reflection geometry. It describes the application of a joint deblurring and denoising approach that had been previously proved to be effective for the restoration of THz-TDS images in transmission geometry, but that had never been tested in reflection modality. This mode is often the only one that can be effectively used in most cases, for example when analyzing objects that are either opaque in the THz range, or that cannot be displaced from their location (e.g., museums), such as those of cultural interest. Compared to transmission mode, reflection geometry introduces, however, further distortion to THz data, neglected in existing literature. In this work, we successfully implement image deblurring and denoising of both uniform-shape samples (a contemporary 1 Euro cent coin and an inlaid pendant) and samples with the uneven reliefs and corrosion products on the surface which make the analysis of the object particularly complex (an ancient Roman silver coin). The study demonstrates the ability of image processing to restore data in the 0.25 - 6 THz range, spanning over more than four octaves, and providing the foundation for future analytical approaches of cultural heritage using the far-infrared spectrum still not sufficiently investigated in literature.

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