• DocumentCode
    567424
  • Title

    Experimental study efficiency of robust models of Lucas-Kanade optical flow algorithms in the present of Non-Gaussian Noise

  • Author

    Kesrarat, Damn ; Patanavijit, Vorapoj

  • Author_Institution
    Dept. of Inf. Technol., Assumption Univ., Bangkok, Thailand
  • fYear
    2012
  • fDate
    7-8 July 2012
  • Firstpage
    43
  • Lastpage
    48
  • Abstract
    This paper presents experimental efficiency study of noise tolerance model of spatial optical flow based on Lucas-Kanade (LK) algorithms such as original LK with kernel of Barron, Fleet, and Beauchemin (BFB), confidence based optical flow algorithm for high reliability (CHR), robust motion estimation methods using gradient orientation information (RGOI), and a novel robust and high reliability for Lucas-Kanade optical flow algorithm using median filter and confidence based technique (NRLK) under several Non-Gaussian Noise. These experiment results are comprehensively tested on several standard sequences (such as AKIYO, COASTGUARD, CONTAINER, and FOREMAN) that have differences speed, foreground and background movement characteristics in a level of 0.5 sub-pixel displacements. Each standard sequence has 6 sets of sequence included an original (no noise), Poisson Noise (PN), Salt&Pepper Noise (SPN) at density (d) = 0.005 and d = 0.025, Speckle Noise (SN) at variance (v) = 0.01 and v = 0.05 respectively which Peak Signal to Noise Ratio (PSNR) is concentrated as the performance indicator.
  • Keywords
    image sequences; median filters; motion estimation; noise; stochastic processes; AKIYO; COASTGUARD; CONTAINER; FOREMAN; Lucas-Kanade optical flow algorithm; PSNR; Poisson noise; RGOI; background movement characteristics; confidence based optical flow algorithm; confidence based technique; foreground movement characteristics; gradient orientation information; median filter; noise tolerance model; nonGaussian noise; peak signal to noise ratio; robust model; robust motion estimation method; salt-and-pepper noise; spatial optical flow; speckle noise; subpixel displacement; Lead; Manganese; PSNR; Robustness;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Knowledge and Smart Technology (KST), 2012 4th International Conference on
  • Conference_Location
    Chonburi
  • Print_ISBN
    978-1-4673-2166-2
  • Type

    conf

  • DOI
    10.1109/KST.2012.6287737
  • Filename
    6287737