Geometrical cloning of 3D objects via simultaneous registration of multiple range images

P. Neugebauer
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引用次数: 161

Abstract

Presents a method for the reconstruction of real-world objects from multiple range images. One major contribution of our approach is the simultaneous registration of all range images acquired from different scanner views. Thus, registration errors are not accumulated, and it is even possible to reconstruct large objects from an arbitrary number of small range images. The registration process is based on a least-squares approach where a distance metric between the overlapping range images is minimized. A resolution hierarchy accelerates the registration substantially. After registration, a volumetric model of the object is carved out. This step is based on the idea that no part of the object can lie between the measured surface and the camera of the scanner. With the marching cube algorithm, a polygonal representation is generated. The accuracy of this polygonal mesh is improved by moving the vertices of the mesh on to the surface implicitly defined by the registered range images.
通过同时配准多个距离图像实现三维物体的几何克隆
提出了一种从多距离图像中重建真实世界物体的方法。我们的方法的一个主要贡献是同时配准从不同的扫描仪视图获得的所有距离图像。因此,配准误差不会累积,甚至可以从任意数量的小范围图像中重建大对象。配准过程基于最小二乘方法,其中重叠范围图像之间的距离度量最小化。解析层次结构大大加快了注册速度。注册后,物体的体积模型被雕刻出来。这一步是基于物体的任何部分都不能位于被测量表面和扫描仪的相机之间的想法。使用行进立方体算法,生成多边形表示。通过将网格的顶点移动到由配准的距离图像隐式定义的表面上,提高了该多边形网格的精度。
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