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Automatic Color Based Reassembly of Fragmented Images and Paintings

机译:基于颜色的自动重组碎片图像和绘画

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摘要

The problem of reassembling image fragments arises in many scientific fields, such as forensics and archaeology. In the field of archaeology, the pictorial excavation findings are almost always in the form of painting fragments. The manual execution of this task is very difficult, as it requires great amount of time, skill and effort. Thus, the automation of such a work is very important and can lead to faster, more efficient, painting reassembly and to a significant reduction in the human effort involved. In this paper, an integrated method for automatic color based 2-D image fragment reassembly is presented. The proposed 2-D reassembly technique is divided into four steps. Initially, the image fragments which are probably spatially adjacent, are identified utilizing techniques employed in content based image retrieval systems. The second operation is to identify the matching contour segments for every retained couple of image fragments, via a dynamic programming technique. The next step is to identify the optimal transformation in order to align the matching contour segments. Many registration techniques have been evaluated to this end. Finally, the overall image is reassembled from its properly aligned fragments. This is achieved via a novel algorithm, which exploits the alignment angles found during the previous step. In each stage, the most robust algorithms having the best performance are investigated and their results are fed to the next step. We have experimented with the proposed method using digitally scanned images of actual torn pieces of paper image prints and we produced very satisfactory reassembly results.
机译:重新组装图像碎片的问题出现在许多科学领域,例如法医学和考古学。在考古领域,图片挖掘发现几乎总是以绘画碎片的形式出现。手动执行此任务非常困难,因为它需要大量的时间,技能和精力。因此,这种工作的自动化非常重要,并且可以导致更快,更有效的喷漆重组,并显着减少所涉及的人工。本文提出了一种基于颜色的二维图像片段自动重组的集成方法。提出的二维重组技术分为四个步骤。最初,利用基于内容的图像检索系统中采用的技术来识别可能在空间上相邻的图像片段。第二个操作是通过动态编程技术为每个保留的图像片段对识别匹配的轮廓段。下一步是确定最佳变换,以对齐匹配的轮廓线段。为此,已经评估了许多注册技术。最后,整个图像从正确对齐的片段中重新组合。这是通过一种新颖的算法实现的,该算法利用了在上一步中找到的对齐角度。在每个阶段,都会研究性能最佳的最健壮算法,并将其结果反馈给下一步。我们使用实际撕碎的纸张图像打印件的数字扫描图像对建议的方法进行了实验,并且产生了非常令人满意的重新组装结果。

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