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Expansion Embedding Techniques for Reversible Watermarking

IEEE Transactions on Image Processing · 2007 · Vol. 16(3) · pp. 721–730
D.M. ThodiJeffrey J. Rodrı́guez

Abstract

Reversible watermarking enables the embedding of useful information in a host signal without any loss of host information. Tian's difference-expansion technique is a high-capacity, reversible method for data embedding. However, the method suffers from undesirable distortion at low embedding capacities and lack of capacity control due to the need for embedding a location map. We propose a histogram shifting technique as an alternative to embedding the location map. The proposed technique improves the distortion performance at low embedding capacities and mitigates the capacity control problem. We also propose a reversible data-embedding technique called prediction-error expansion. This new technique better exploits the correlation inherent in the neighborhood of a pixel than the difference-expansion scheme. Prediction-error expansion and histogram shifting combine to form an effective method for data embedding. The experimental results for many standard test images show that prediction-error expansion doubles the maximum embedding capacity when compared to difference expansion. There is also a significant improvement in the quality of the watermarked image, especially at moderate embedding capacities.

Advanced Steganography and Watermarking TechniquesDigital Media Forensic DetectionChaos-based Image/Signal EncryptionEmbeddingDigital watermarkingDistortion (music)HistogramPixelAlgorithmMathematicsComputer scienceInformation hidingArtificial intelligence

MeSH terms

AlgorithmsComputer GraphicsImage Interpretation, Computer-AssistedPatents as TopicPattern Recognition, AutomatedProduct LabelingSignal Processing, Computer-AssistedComputer SecurityHypermediaData Compression
Citations
1,393
FWCI
37.81
field-weighted impact
References
31
Percentile
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References
Reversible Watermark Using the Difference Expansion of a Generalized Integer Transform
IEEE Transactions on Image Processing · 2004 · 1,233 citations
Lossless generalized-LSB data embedding
IEEE Transactions on Image Processing · 2005 · 1,168 citations
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