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Three-dimensional face imaging and recognition: A sensor design and comparative study.

机译:三维面部成像和识别:传感器设计和比较研究。

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摘要

Many commercially available 3D sensors suitable for face image capture employ passive or texture-assisted stereo imaging or structured illumination with a moving light stripe. These techniques require a stationary subject.;We describe a design and evaluation of a fixed-stripe, moving object 3D scanner designed for human faces, called the Static Light Screen (SLS) Scanner (Patent Pending). Our method of acquisition requires the subject to walk through a light screen generated by two laser line projectors. Triangulation and tracking applied to the video sequences captured during subject motion yield a 3D image of the subject's face from multiple images.;To demonstrate the accuracy of our initial design, a small-scale facial recognition experiment was executed. In an experiment with 476 images of 161 unique subjects, we achieved 46.3% rank-one recognition using an Iterative Closest Point (ICP) based matching method, demonstrating the feasibility of the technique. This is the subset of our full SLS dataset with 2270 images of 379 unique subjects, which has a subject velocity less than 0.33 m/s.;We also developed techniques to improve face recognition based on ICP using fusion techniques and score normalization techniques. We improved rank-one recognition on a data set (FRGC v2) of 4007 faces of 466 unique subjects from 96.4% rank-one recognition to 98.6%.
机译:许多适用于面部图像捕获的市售3D传感器采用无源或纹理辅助的立体成像或具有移动光条的结构化照明。这些技术需要固定的主体。我们描述了一种为人脸设计的固定条纹,移动物体3D扫描仪的设计和评估,该扫描仪称为静态光屏(SLS)扫描仪(正在申请专利)。我们的采集方法要求受试者走过由两台激光线投影仪产生的光幕。三角剖分和跟踪应用于在对象运动期间捕获的视频序列,可以从多个图像中生成对象脸部的3D图像。为了证明我们最初设计的准确性,我们执行了一个小规模的面部识别实验。在对161个唯一对象的476张图像进行的实验中,我们使用基于迭代最近点(ICP)的匹配方法获得了46.3%的秩一识别,证明了该技术的可行性。这是我们完整的SLS数据集的子集,其中包含379个唯一主题的2270张图像,主题速度小于0.33 m / s .;我们还开发了基于ICP的融合技术和得分归一化技术来改善人脸识别的技术。我们将466个独特受试者的4007张面孔的数据集(FRGC v2)的排名识别从96.4%排名提高到了98.6%。

著录项

  • 作者

    McKeon, Robert.;

  • 作者单位

    University of Notre Dame.;

  • 授予单位 University of Notre Dame.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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