• DocumentCode
    1565875
  • Title

    High Capacity Steganographic Method Based Upon JPEG

  • Author

    Almohammad, Adel ; Hierons, Robert M. ; Ghinea, Gheorghita

  • Author_Institution
    Brunel Univ., London
  • fYear
    2008
  • Firstpage
    544
  • Lastpage
    549
  • Abstract
    The two most important aspects of any image-based steganographic system are the quality of the stego-image and the capacity of the cover image. This paper proposes a novel and high capacity steganographic approach based on Discrete Cosine Transformation (DCT) and JPEG compression. JPEG technique divides the input image into non-overlapping blocks of 8times8 pixels and uses the DCT transformation. However, our proposed method divides the cover image into non- overlapping blocks of 16times16 pixels. For each quantized DCT block, the least two-significant bits (2-LSBs) of each middle frequency coefficient are modified to embed two secret bits. Our aim is to investigate the data hiding efficiency using larger blocks for JPEG compression. Our experiment result shows that the proposed approach can provide a higher information- hiding capacity than Jpeg-Jsteg and Chang et al. methods based on the conventional blocks of 8times8 pixels. Furthermore, the produced stego-images are almost identical to the original cover images.
  • Keywords
    cryptography; data compression; data encapsulation; discrete cosine transforms; image coding; JPEG compression; data hiding scheme; discrete cosine transformation; high capacity steganographic method; image-based steganographic system; Discrete cosine transforms; Frequency domain analysis; Image coding; Internet; Pixel; Robustness; Security; Steganography; Transform coding; Watermarking; Capacity; Data hiding; Image compression; JPEG.; Steganography; quantization;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Availability, Reliability and Security, 2008. ARES 08. Third International Conference on
  • Conference_Location
    Barcelona
  • Print_ISBN
    978-0-7695-3102-1
  • Type

    conf

  • DOI
    10.1109/ARES.2008.72
  • Filename
    4529388