Title :
On Estimation Accuracy of Desynchronization Attack Channel Parameters
Author :
Sadasivam, Shankar ; Moulin, Pierre
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Illinois at Urbana-Champaign, Urbana, IL, USA
Abstract :
In this paper, we study some fundamental performance limits of blind data hiding against desynchronization attacks. These attacks are modeled in addition to independent Gaussian noise to the marked signal, followed by linear, time-invariant filtering. We study a joint estimator-decoder which estimates the desynchronization attack parameters and uses these estimates in the decoding step. We propose a coding scheme based on distortion-compensated quantization index modulation and derive the estimation accuracy of the attack parameters via Fisher information and a Cramer-Rao type bound. For illustration purposes, we report estimation and decoding results on several attacks, including classical ones (scaling and fractional shifts) and some new ones. The results are in close agreement with our bounds and tightly quantify the performance loss due to desynchronization and the influence of code block length. Thus our results demonstrate the high performance of a joint estimation-decoding approach.
Keywords :
Gaussian noise; cryptography; data encapsulation; decoding; encoding; filtering theory; Cramer-Rao type bound; Fisher information; blind data hiding; code block length; coding scheme; desynchronization attack channel parameters; distortion-compensated quantization index modulation; estimation accuracy; fractional shifts; independent Gaussian noise; joint estimation-decoding approach; linear filtering; performance limits; time-invariant filtering; Blind decoding; CramÉr–Rao bound (CRB); Fisher information; data-hiding; desynchronization attacks; discrete Fourier transform (DFT); estimator-decoder; linear time-invariant (LTI) system; quantization index modulation (QIM);
Journal_Title :
Information Forensics and Security, IEEE Transactions on
DOI :
10.1109/TIFS.2009.2025852