JPEG steganalysis based on the entropy features of wavelet histogram distributions

被引:0
作者
机构
[1] School of Science, Naval University of Engineering, Wuhan
[2] Department of Information Security, Naval University of Engineering, Wuhan
来源
Wu, Mingqiang | 1600年 / Binary Information Press卷 / 10期
基金
中国国家自然科学基金;
关键词
Histogram distribution; One-class classifier; Steganalysis; Symmetrical cross entropy; Wavelet coefficient;
D O I
10.12733/jcis10807
中图分类号
学科分类号
摘要
To detect the existence of hidden message in JPEG images, the histogram distributions of wavelet subbands are captured to describe the images statistical characteristics. And the symmetrical cross entropy difference features of the histogram distributions that captured from both detection images and their estimated cover images are calculated. Then a feature-matched one-class classifier is designed to make classification. Experimental results demonstrate that the proposed method can effectively distinguish between cover images and stego images, and significantly improves the detection accuracy. 1553-9105/Copyright © 2014 Binary Information Press
引用
收藏
页码:8139 / 8145
页数:6
相关论文
共 13 条
[1]  
Fridrich J., Pevny T., Kodovsky J., Statistically undetectable JPEG steganography: dead ends, challenges, and opportunities, Proceedings of the 9th Workshop on Multimedia & Security, pp. 3-14, (2007)
[2]  
Solanki K., Sarkar A., Manjunath B.S., YASS: yet another steganographic scheme that resists blind steganalysis, Proceedings of the 9th International Workshop on Information Hiding, 4567, pp. 16-31, (2007)
[3]  
Bhat V.H., Krishna S., Shenoy P.D., Et al., Steganalysis of YASS using Huffman length statistics, International Journal of Hybrid Information Technology, 4, 3, pp. 15-30, (2011)
[4]  
Gul G., Kurugollu F., JPEG image steganalysis using multivariate PDF estimates with MRF cliques, IEEE Transactions on Information Forensics and Security, 8, 3, pp. 578-587, (2013)
[5]  
Sun Z.W., Li H., Steganalysis based on co-occurrence matrix in DCT domain, Journal of Computational Information Systems, 6, 3, pp. 813-819, (2010)
[6]  
Lyu S., Farid H., Steganalysis using higher-order image statistics, IEEE Transactions on Information Forensies and Security, 1, 1, pp. 111-119, (2006)
[7]  
Luo P., Su Y., Research on simulated annealing clustering algorithm in the steganalysis of image based on the one-class support vector machine, Proceedings of 2010 International Conference on Computer Application and System Modeling, pp. 446-450, (2010)
[8]  
Zhou Z.P., Zhang X.X., Chen Z.M., A universal steganalysis based on one-class classification, Journal of Computational Information Systems, 6, 9, pp. 2941-2948, (2010)
[9]  
Zong H., Liu F.L., Luo X.Y., Blind image steganalysis based on wavelet coefficient correlation, Digital Investigation, 9, 1, pp. 58-68, (2012)
[10]  
Yu X.M., Wang R.D., Yan D.Q., Et al., MP3 audio steganalysis using calibrated side information feature, Journal of Computational Information Systems, 8, 10, pp. 4241-4248, (2012)