...
首页> 外文期刊>Pattern Recognition: The Journal of the Pattern Recognition Society >A SfM-based 3D face reconstruction method robust to self-occlusion by using a shape conversion matrix
【24h】

A SfM-based 3D face reconstruction method robust to self-occlusion by using a shape conversion matrix

机译:基于SfM的3D人脸重构方法

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents a 3D face reconstruction method using multiple 2D face images. Structure from motion (SfM) methods, which have been widely used to reconstruct 3D faces, are vulnerable to point correspondence errors caused by self-occlusion. In order to solve this problem, we propose a shape conversion matrix (SCM) which estimates the ground-truth 2D facial feature points (FFPs) from the observed 2D FFPs corrupted by self-occlusion errors. To make the SCM, the training observed 2D FFPs and ground-truth 2D FFPs are collected by using 3D face scans. An observed shape model and a ground-truth shape model are then built to represent the observed 2D FFPs and the ground-truth 2D FFPs, respectively. Finally, the observed shape model parameter is converted to the ground truth shape model parameter via the SCM. By using the SCM, the true locations of the self-occluded FFPs are estimated exactly with simple matrix multiplications. As a result, SfM-based 3D face reconstruction methods combined with the proposed SCM become more robust against point correspondence errors caused by self-occlusion, and the computational cost is significantly reduced. In experiments, the reconstructed 3D facial shape is quantitatively compared with the 3D facial shape obtained from a 3D scanner, and the results show that SfM-based 3D face reconstruction methods with the proposed SCM show a higher accuracy and a faster processing time than SfM-based 3D face reconstruction methods without the SCM.
机译:本文提出了一种使用多个2D人脸图像的3D人脸重建方法。运动构造(SfM)方法已被广泛地用于重建3D人脸,但容易受到自遮挡引起的点对应误差的影响。为了解决此问题,我们提出了一种形状转换矩阵(SCM),该形状转换矩阵从观察到的因自闭塞误差而损坏的2D FFP中估算出真实的2D面部特征点(FFP)。为了制作SCM,使用3D面部扫描收集了训练后观察到的2D FFP和真实的2D FFP。然后,建立观察到的形状模型和地面真实形状模型,分别代表观察到的2D FFP和地面真实2D FFP。最后,将观测到的形状模型参数通过SCM转换为地面真实形状模型参数。通过使用SCM,可以通过简单的矩阵乘法精确估算出自闭FFP的真实位置。结果,与所提出的SCM相结合的基于SfM的3D脸部重构方法对于针对由自闭塞引起的点对应误差变得更加鲁棒,并且显着降低了计算成本。在实验中,将重建的3D脸部形状与从3D扫描仪获得的3D脸部形状进行定量比较,结果表明,与SfM-相比,基于SfM的3D人脸重建方法与提出的SCM相比具有更高的准确性和更快的处理时间无需SCM的基于3D人脸重建的方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号