Rotational contour signatures for robust local surface description

Jiaqi Yang, Qian Zhang, Ke Xian, Yang Xiao, ZHIGUO CAO
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引用次数: 12

Abstract

This paper presents a novel local surface descriptor called rotational contour signatures (RCS) for 3D rigid objects. RCS comprises several signatures that characterize the 2D contour information derived from 3D-to-2D projection of the local surface. The inspiration of our encoding technique comes from that, viewing towards an object, its contour is an effective and robust cue for representing its shape. In order to achieve a comprehensive geometry encoding, the local surface is continually rotated in a predefined local reference frame (LRF) so that multi-view information is obtained. Experiments on two publicly available datasets demonstrate the effectiveness and robustness of the proposed descriptor. Further, comparisons with five state-of-the-art descriptors show the superiority of our RCS descriptor.
旋转轮廓特征的鲁棒局部表面描述
提出了一种新的三维刚体局部表面描述子旋转轮廓特征(RCS)。RCS包括几个特征,这些特征表征了从局部表面的3d到2D投影派生的2D轮廓信息。我们的编码技术的灵感来自于,在观察一个物体时,它的轮廓是一个有效的和健壮的线索来表示它的形状。为了实现全面的几何编码,局部曲面在预定义的局部参考帧(LRF)中连续旋转,从而获得多视图信息。在两个公开可用的数据集上的实验证明了所提出描述符的有效性和鲁棒性。此外,与五个最先进的描述符的比较显示了我们的RCS描述符的优越性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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