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An Improved Physically-Based Method for Geometric Restoration of Distorted Document Images

机译:一种改进的基于物理的失真文档图像几何复原方法

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In document digitization through camera-based systems, simple imaging setups often produce geometric distortions in the resultant 2D images because of the nonplanar geometric shapes of certain documents such as thick bound books, rolled, folded, or crumpled materials, etc. Previous work [1], [2], [3], [4] has demonstrated that arbitrary warped documents can be successfully restored by flattening a 3D scan of the document. These approaches use physically-based or relaxation-based techniques in their flattening process. While this has been demonstrated to be effective in rectifying the image content and improving OCR, these previous approaches have several limitations in terms of speed and stability. In this paper, we propose a distance-based penalty metric to replace the mass- spring model and introduce additional bending resistance and drag forces to improve the efficiency of the existing approaches. The use of Verlet integration and special plane collision handling schemes also help to achieve better stability without sacrificing efficiency. Experiments on various document images captured from books, brochures, and historical documents with arbitrary warpings have demonstrated large improvements over the existing approaches in terms of stability and efficiency.
机译:在通过基于相机的系统对文档进行数字化处理时,由于某些文档的非平面几何形状(例如厚装订本,卷起,折叠或弄皱的材料等),简单的成像设置经常会在最终的2D图像中产生几何失真。以前的工作[1 ],[2],[3],[4]证明了通过对文档的3D扫描进行展平可以成功恢复任意变形的文档。这些方法在展平过程中使用基于物理或基于松弛的技术。尽管已证明这在矫正图像内容和改善OCR方面是有效的,但这些先前的方法在速度和稳定性方面都有一些限制。在本文中,我们提出了一种基于距离的惩罚度量来代替质量弹簧模型,并引入了额外的抗弯性和阻力,以提高现有方法的效率。 Verlet集成和特殊的平面碰撞处理方案的使用也有助于在不牺牲效率的情况下实现更好的稳定性。对从书本,小册子和历史文档中捕获的各种文档图像进行任意弯曲的实验已经证明,在稳定性和效率方面,与现有方法相比有很大改进。

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