DocumentCode :
1476259
Title :
Lossless Data Embedding Using Generalized Statistical Quantity Histogram
Author :
Gao, Xinbo ; An, Lingling ; Yuan, Yuan ; Tao, Dacheng ; Li, Xuelong
Author_Institution :
Sch. of Electron. Eng., Xidian Univ., Xi´´an, China
Volume :
21
Issue :
8
fYear :
2011
Firstpage :
1061
Lastpage :
1070
Abstract :
Histogram-based lossless data embedding (LDE) has been recognized as an effective and efficient way for copyright protection of multimedia. Recently, a LDE method using the statistical quantity histogram has achieved good performance, which utilizes the similarity of the arithmetic average of difference histogram (AADH) to reduce the diversity of images and ensure the stable performance of LDE. However, this method is strongly dependent on some assumptions, which limits its applications in practice. In addition, the capacities of the images with the flat AADH, e.g., texture images, are a little bit low. For this purpose, we develop a novel framework for LDE by incorporating the merits from the generalized statistical quantity histogram (GSQH) and the histogram-based embedding. Algorithmically, we design the GSQH driven LDE framework carefully so that it: (1) utilizes the similarity and sparsity of GSQH to construct an efficient embedding carrier, leading to a general and stable framework; (2) is widely adaptable for different kinds of images, due to the usage of the divide-and-conquer strategy; (3) is scalable for different capacity requirements and avoids the capacity problems caused by the flat histogram distribution; (4) is conditionally robust against JPEG compression under a suitable scale factor; and (5) is secure for copyright protection because of the safe storage and transmission of side information. Thorough experiments over three kinds of images demonstrate the effectiveness of the proposed framework.
Keywords :
copyright; data compression; image coding; image texture; multimedia communication; statistical analysis; GSQH driven LDE framework; JPEG compression; LDE method; arithmetic average; copyright protection; divide-and-conquer strategy; flat histogram distribution; generalized statistical quantity histogram; histogram-based lossless data embedding; image diversity; image texture; information transmission; multimedia protection; statistical quantity histogram-based embedding; Biomedical imaging; DH-HEMTs; Databases; Histograms; Image coding; Receivers; Watermarking; Generalized statistical quantity histogram; lossless data embedding; reversibility; video and image watermarking;
fLanguage :
English
Journal_Title :
Circuits and Systems for Video Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8215
Type :
jour
DOI :
10.1109/TCSVT.2011.2130410
Filename :
5735196
Link To Document :
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