DocumentCode :
1171656
Title :
Joint iterative decoding and estimation for side-informed data hiding
Author :
Balado, Félix ; Whelan, Kevin M. ; Silvestre, Guénolé C M ; Hurley, Neil J.
Author_Institution :
Dept. of Comput. Sci., Univ. Coll. Dublin, Ireland
Volume :
53
Issue :
10
fYear :
2005
Firstpage :
4006
Lastpage :
4019
Abstract :
We present a previously unavailable study on a general procedure for joint iterative decoding and estimation of attack parameters in side-informed data hiding. This type of approach, which exploits iteratively decodable codes for channel identification purposes, has recently become a relevant research trend in many digital communications problems. An advantage is that estimation pilots are not strictly required, thus affording in principle the implementation of blind methods that are able to work close to the theoretically maximum achievable rate. Such a target naturally requires the use of both near-optimum side-informed data hiding methods (e.g., DC-DM) and near-optimum iteratively decodable channel codes (e.g., turbo codes). The attack channels considered in this study are additive independent random noise, amplitude scaling, and a particular case of fine desynchronization of the sampling grid, whose parameters are estimated by maximum likelihood at the decoder. The complexity of this task is tackled by means of the Expectation-Maximization (EM) algorithm, relying on the use of a priori probabilities produced by the iterative decoding process.
Keywords :
channel coding; channel estimation; data encapsulation; iterative decoding; maximum likelihood estimation; telecommunication security; channel codes; channel identification; digital communication; expectation-maximization algorithm; fine desynchronization; joint iterative decoding; maximum likelihood estimation; parameter estimation; sampling grid; side-informed data hiding; Additive noise; Amplitude estimation; Data encapsulation; Digital communication; Iterative decoding; Maximum likelihood decoding; Noise level; Parameter estimation; Sampling methods; Turbo codes; Additive attacks; amplitude scaling; desynchronization; joint estimation and decoding; side-informed data hiding;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2005.855412
Filename :
1511013
Link To Document :
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