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首页> 外文期刊>Journal of electronic imaging >Image processing for three-dimensional scans generated by time-of-flight range cameras
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Image processing for three-dimensional scans generated by time-of-flight range cameras

机译:飞行时间范围相机生成的三维扫描图像处理

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摘要

Time-of-flight (TOF) full-field range cameras use a correlative imaging technique to generate three-dimensional measurements of the environment. Though reliable and cheap they have the disadvantage of high measurement noise and errors that limit the practical use of these cameras in industrial applications. We show how some of these limitations can be overcome with standard image processing techniques specially adapted to TOF camera data. Additional information in the multimodal images recorded in this setting, and not available in standard image processing settings, can be used to improve reduction of measurement noise. Three extensions of standard techniques, wavelet thresholding, adaptive smoothing on a clustering based image segmentation, and an extended anisotropic diffusion filtering, make use of this information and are compared on synthetic data and on data acquired from two different off-the-shelf TOF cameras. Of these methods, the adapted anisotropic diffusion technique gives best results, and is implementable to perform in realtime using current graphics processing unit (GPU) hardware. Like traditional anisotropic diffusion, it requires some parameter adaptation to the scene characteristics, but allows for low visualization delay and improved visualization of moving objects by avoiding long averaging periods when compared to traditional TOF image denoising.
机译:飞行时间(TOF)全视野摄像机使用相关的成像技术来生成环境的三维测量值。尽管它们可靠且便宜,但它们具有高测量噪声和误差的缺点,从而限制了这些相机在工业应用中的实际使用。我们展示了如何通过专门适用于TOF相机数据的标准图像处理技术来克服其中一些局限性。在此设置下记录的多模式图像中的其他信息(在标准图像处理设置中不可用)可用于改善测量噪声的降低。标准技术的三种扩展,小波阈值,基于聚类的图像分割上的自适应平滑以及扩展的各向异性扩散滤波,均利用此信息,并在合成数据和从两个不同的现成TOF相机获取的数据上进行比较。在这些方法中,自适应各向异性扩散技术可提供最佳结果,并且可使用当前的图形处理单元(GPU)硬件实时执行。与传统的各向异性扩散一样,它需要对场景特征进行一些参数调整,但是与传统的TOF图像降噪相比,它避免了较长的平均周期,从而实现了较低的可视化延迟并改善了运动对象的可视化效果。

著录项

  • 来源
    《Journal of electronic imaging》 |2012年第2期|p.023012.1-023012.11|共11页
  • 作者单位

    Software Competence Center Hagenberg 4232 Hagenberg, Austria;

    Johannes Kepler University of Linz Department of Knowledge-based Mathematical Systems 4232 Hagenberg, Austria;

    University of Waikato Department of Engineering Hamilton 3240, New Zealand;

    Johannes Kepler University of Linz Department of Knowledge-based Mathematical Systems 4232 Hagenberg, Austria;

    Software Competence Center Hagenberg 4232 Hagenberg, Austria;

    University of Waikato Department of Engineering Hamilton 3240, New Zealand;

    University of Waikato Department of Engineering Hamilton 3240, New Zealand;

    Software Competence Center Hagenberg 4232 Hagenberg, Austria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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