• DocumentCode
    1171631
  • Title

    Rational dither modulation: a high-rate data-hiding method invariant to gain attacks

  • Author

    Pérez-González, Fernando ; Mosquera, Carlos ; Barni, Mauro ; Abrardo, Andrea

  • Author_Institution
    Dept. Teoria de la Senal y Comunicaciones, Univ. de Vigo, Spain
  • Volume
    53
  • Issue
    10
  • fYear
    2005
  • Firstpage
    3960
  • Lastpage
    3975
  • Abstract
    A novel quantization-based data-hiding method, called Rational Dither Modulation (RDM), is presented. This method retains most of the simplicity of the conventional dither modulation (DM) scheme, which is largely vulnerable to amplitude scalings and modifies it in such a way that the result becomes invariant to gain attacks. RDM is based on using a gain-invariant adaptive quantization step-size at both embedder and decoder. This causes the watermarked signal to be asymptotically stationary. Mathematical tools are used to determine the stationary probability density function, which is later used to assess the performance of RDM in Gaussian channels. It is also shown that by increasing the memory of the system, it is possible to asymptotically approach the performance of DM, still keeping invariance against gain attacks. RDM is compared with improved spread-spectrum methods, showing that the former can achieve much higher rates for the same bit error probability. Experimental results confirm the validity of the theoretical analyses given in the paper. Finally, a broader class of methods, that extends gain-invariance to quantization index modulation (QIM) methods, is also presented.
  • Keywords
    Gaussian channels; data encapsulation; decoding; error statistics; modulation; quantisation (signal); watermarking; Gaussian channels; QIM method; RDM; bit error probability; decoder; gain attacks; gain-invariant adaptive quantization step-size; mathematical tools; quantization index modulation; quantization-based data-hiding method; rational dither modulation; stationary probability density function; watermark signal; Amplitude modulation; Decoding; Delta modulation; Error probability; Gaussian channels; Performance gain; Probability density function; Quantization; Spread spectrum communication; Watermarking; Data hiding; dither modulation; quantization index modulation;
  • fLanguage
    English
  • Journal_Title
    Signal Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1053-587X
  • Type

    jour

  • DOI
    10.1109/TSP.2005.855407
  • Filename
    1511010