• DocumentCode
    3278260
  • Title

    Detection of 3D points on moving objects from point cloud data for 3D modeling of outdoor environments

  • Author

    Kanatani, Tsunetake ; Kume, Hideyuki ; Taketomi, Takafumi ; Sato, Takao ; Yokoya, Naoto

  • Author_Institution
    Hyogo Prefectural Inst. of Technol., Kobe, Japan
  • fYear
    2013
  • fDate
    15-18 Sept. 2013
  • Firstpage
    2163
  • Lastpage
    2167
  • Abstract
    A 3D modeling technique for an urban environment can be applied to several applications such as landscape simulations, navigational systems, and mixed reality systems. In this field, the target environment is first measured using several types of sensors (laser rangefinders, cameras, GPS sensors, and gyroscopes). A 3D model of the environment is then constructed based on the results of the 3D measurements. In this 3D modeling process, 3D points that exist on moving objects become obstacles or outliers to enable the construction of an accurate 3D model. To solve this problem, we propose a method for detecting 3D points on moving objects from 3D point cloud data based on photometric consistency and knowledge of the road environment. In our method, 3D points on moving objects are detected based on luminance variations obtained by projecting 3D points onto omnidirectional images. After detecting 3D the points based on evaluation value, the points are detected using prior information of the road environment.
  • Keywords
    Global Positioning System; cameras; computer vision; gyroscopes; image motion analysis; laser ranging; object detection; sensor fusion; solid modelling; 3D measurement; 3D point detection; 3D points projection; GPS sensors; cameras; gyroscopes; landscape simulation; laser rangefinders; luminance variation; mixed reality system; moving objects; navigational system; obstacles; omnidirectional images; outdoor environment 3D modeling; outliers; photometric consistency; point cloud data; road environment; urban environment; 3D Modeling; 3D Point Cloud Data; HSV Model; Moving Objects; Outdoor Environment;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Image Processing (ICIP), 2013 20th IEEE International Conference on
  • Conference_Location
    Melbourne, VIC
  • Type

    conf

  • DOI
    10.1109/ICIP.2013.6738446
  • Filename
    6738446