• DocumentCode
    1668756
  • Title

    Super-resolved 3D reconstruction for parking assistance using projective transformation

  • Author

    Nakajima, Kensuke ; Ohkawa, Takeshi ; Tanaka, Shoji ; Ito, Takao

  • Author_Institution
    Grad. Sch. of Syst. Inf., Kobe Univ., Kobe, Japan
  • fYear
    2013
  • Firstpage
    300
  • Lastpage
    304
  • Abstract
    Recently, computer vision technology has been widely adopted for the safety technology of automobiles. In conventional methods, research on the recognition of obstacles of similar height has advanced, such as the recognition of pedestrians or nearby vehicles. However, we must also help drivers recognize the height of obstacles that the vehicles cannot drive over, such as parking lot sprags and curbstones. We propose a 3D reconstruction method of small obstacles in this paper. Due to the cost and the problem of camera calibration, we use an in-vehicle monocular camera. Generally, a camera-view image is used for 3D reconstruction. For the camera-view image, objects far from the camera are reflected as small and their reconstructed 3D information has less accuracy due to the mismatch that occurs in the template matching process. Therefore, we propose a correct matching method using the shape of the tops of the same object because it does not change the sequential top-view images. Using our proposed method, more correct 3D information can be acquired than with camera-view image.
  • Keywords
    calibration; cameras; computer vision; driver information systems; image matching; image reconstruction; object recognition; pedestrians; solid modelling; 3D information reconstruction; automobile safety technology; camera calibration; camera-view image; computer vision technology; in-vehicle monocular camera; nearby vehicle recognition; obstacle height recognition; obstacle recognition; parking assistance; parking lot curbstones; parking lot sprags; pedestrian recognition; projective transformation; sequential top-view images; super-resolved 3D reconstruction method; template matching process; Cameras; Conferences; Image reconstruction; Image resolution; Interpolation; Three-dimensional displays; Vehicles; 3D reconstruction; ITS; Monocular camera; Perspective transformation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Frontiers of Computer Vision, (FCV), 2013 19th Korea-Japan Joint Workshop on
  • Conference_Location
    Incheon
  • Print_ISBN
    978-1-4673-5620-6
  • Type

    conf

  • DOI
    10.1109/FCV.2013.6485509
  • Filename
    6485509