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Image-based metric heritage modeling in the near-infrared spectrum

机译:近红外光谱中的基于图像的公制遗产建模

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Digital photogrammetry and spectral imaging are widely used in heritage sciences towards the comprehensive recording, understanding, and protection of historical artifacts and artworks. The availability of consumer-grade modified cameras for spectral acquisition, as an alternative to expensive multispectral sensors and multi-sensor apparatuses, along with semi-automatic software implementations of Structure-from-Motion (SfM) and Multiple-View-Stereo (MVS) algorithms, has made more feasible than ever the combination of those techniques. In the research presented here, the authors assess image-based modeling from near-infrared (NIR) imagery acquired with modified consumer-grade cameras, with applications on tangible heritage. Three-dimensional (3D) meshes, textured with the non-visible data, are produced and evaluated. Specifically, metric evaluations are conducted through extensive comparisons with models produced with image-based modeling from visible (VIS) imagery and with structured light scanning, to check the accuracy of results. Furthermore, the authors observe and discuss, how the implemented NIR modeling approach, affects the surface of the reconstructed models, and may counteract specific problems which arise from lighting conditions during VIS acquisition. The radiometric properties of the produced results are evaluated, in comparison to the respective results in the visible spectrum, on the capacity to enhance observation towards the characterization of the surface and under-surface state of preservation, and consequently, to support conservation interventions.
机译:数字摄影测量和光谱成像广泛用于遗产科学,旨在综合记录,理解和历史文物和艺术品的保护。用于光谱采集的消费级修改摄像机的可用性,作为昂贵的多光谱传感器和多传感器装置的替代方案,以及结构 - 型从运动(SFM)和多视图 - 立体声(MV)的半自动软件实现算法,比这些技术的组合更加可行。在此处提出的研究中,作者评估了通过用改进的消费者级相机获得的近红外(NIR)图像的基于图像的建模,在有形遗产上的应用。生产和评估具有不可见数据的三维(3D)网格,纹理纹理,并评估。具体地,通过广泛的比较进行度量评估,该模型与从可见(VIS)图像和结构光扫描的基于图像的模型产生的模型进行检查,以检查结果的准确性。此外,作者观察和讨论实施的NIR建模方法如何影响重建模型的表面,并且可以抵消在VIS获取期间从照明条件产生的特定问题。与各个导致可见光谱的相应结果相比,评估所生产的结果的放射性特性,用于增强朝向表面和表面底表面状态的观察的能力,并因此支持保护干预。

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