Symmetric piecewise planar object reconstruction from a single image

Tianfan Xue, Jianzhuang Liu, Xiaoou Tang
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引用次数: 20

Abstract

Recovering 3D geometry from a single view of an object is an important and challenging problem in computer vision. Previous methods mainly focus on one specific class of objects without large topological changes, such as cars, faces, or human bodies. In this paper, we propose a novel single view reconstruction algorithm for symmetric piece-wise planar objects that are not restricted to some object classes. Symmetry is ubiquitous in manmade and natural objects and provides rich information for 3D reconstruction. Given a single view of a symmetric piecewise planar object, we first find out all the symmetric line pairs. The geometric properties of symmetric objects are used to narrow down the searching space. Then, based on the symmetric lines, a depth map is recovered through a Markov random field. Experimental results show that our algorithm can efficiently recover the 3D shapes of different objects with significant topological variations.
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对称分段平面物体重建从一个单一的图像
从一个物体的单一视图中恢复三维几何形状是计算机视觉中的一个重要而具有挑战性的问题。以前的方法主要集中在一类特定的物体上,没有大的拓扑变化,比如汽车、人脸或人体。在本文中,我们提出了一种不受某些对象类限制的对称分段平面对象的单视图重建算法。对称在人造和自然物体中无处不在,为三维重建提供了丰富的信息。给定一个对称分段平面物体的单一视图,首先求出所有的对称线对。利用对称对象的几何特性来缩小搜索空间。然后,基于对称线,通过马尔可夫随机场恢复深度图。实验结果表明,该算法可以有效地恢复具有明显拓扑变化的不同物体的三维形状。
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