• DocumentCode
    1769493
  • Title

    Fast single frame super-resolution using perceptual visibility optimization

  • Author

    Luhong Liang ; Peng Luo ; Wai Keung Cheung ; King Hung Chiu

  • Author_Institution
    Hong Kong Appl. Sci. & Technol. Res. Inst., Hong Kong, China
  • fYear
    2014
  • fDate
    1-5 June 2014
  • Firstpage
    2716
  • Lastpage
    2719
  • Abstract
    Example-based super-resolution (SR) approaches mostly reconstruct and optimize the high-resolution (HR) image according to objective criteria such as imaging model. However, in consumer electronics applications the ultimate goal is better subjective visual effect rather than higher objective texture visibility. In this paper, we propose a SR method using perceptual visibility optimization (PVO). A human visual system (HVS) preference model is built based on just noticeable distortion (JND) threshold that considers the structural regularity of the texture. Following the scale-invariant self-similarity (SiSS) based SR reconstruction, an iterative backprojection (IBP) procedure coupled with the proposed model adaptively enhances the texture visibility to match the HVS´s preference. Experimental results show the proposed approach has competitive quality and lower computational complexity compared with several state-of-the-art SR approaches.
  • Keywords
    computational complexity; consumer electronics; fractals; image reconstruction; image resolution; image texture; iterative methods; HVS preference model; JND threshold; SR method; SiSS based SR reconstruction; computational complexity; consumer electronics applications; example-based super-resolution approaches; high-resolution image optimization; high-resolution image reconstruction; human visual system preference model; imaging model; iterative backprojection procedure; just noticeable distortion threshold; objective texture visibility; perceptual visibility optimization; scale-invariant self-similarity based SR reconstruction; single frame super-resolution; subjective visual effect; Adaptation models; Image reconstruction; Image resolution; Imaging; Interpolation; Kernel; Optimization; human visual system; iterative back-projection; super-resolution;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Circuits and Systems (ISCAS), 2014 IEEE International Symposium on
  • Conference_Location
    Melbourne VIC
  • Print_ISBN
    978-1-4799-3431-7
  • Type

    conf

  • DOI
    10.1109/ISCAS.2014.6865734
  • Filename
    6865734