Title :
Optimum perfect steganography of memoryless sources as a rate-distortion problem
Author :
Balado, Felix ; Haughton, Dominique
Author_Institution :
Sch. of Comput. Sci. & Inf., Univ. Coll. Dublin, Dublin, Ireland
Abstract :
Slepian´s variant I permutation coding has been recently shown to be a fundamental steganographic tool, as it implements optimum perfect steganography of memoryless sources. Although real host signals are not memoryless, a decorrelating energy-preserving transform can always be applied before a method that assumes a memoryless source, as is usually done in the dual problem of source coding. A further constraint is needed in practice: the information-carrying signal must be close to the host, according to some distance measure. Thus steganography of memoryless sources using permutation coding is a rate-distortion problem. Here we delve deeper in the study of the embedding distortion of permutation coding, and we show that the rate-distortion tradeoff for partitioned permutation coding is near-optimum according to the Gel´fand and Pinsker capacity formula.
Keywords :
decorrelation; distortion; memoryless systems; rate distortion theory; source coding; steganography; Gel´fand and Pinsker capacity formula; Slepian variant I permutation coding; decorrelating energy preserving transform; distance measure; dual problem; embedding distortion; fundamental steganographic tool; information carrying signal; memoryless source steganography; optimum perfect steganography; rate distortion problem; source coding; Educational institutions; Random variables;
Conference_Titel :
Information Forensics and Security (WIFS), 2013 IEEE International Workshop on
Conference_Location :
Guangzhou
DOI :
10.1109/WIFS.2013.6707814