Lossless data embedding with file size preservation

被引:24
作者
Fridrich, J [1 ]
Goljan, M [1 ]
Chen, Q [1 ]
Pathak, V [1 ]
机构
[1] SUNY Binghamton, Dept Elect & Comp Engn, Binghamton, NY 13902 USA
来源
SECURITY, STEGANOGRAPHY, AND WATERMARKING OF MULTIMEDIA CONTENTS VI | 2004年 / 5306卷
关键词
embedding; lossless; erasable; invertible; removable; distortion; file size preservation; RLE; JPEG;
D O I
10.1117/12.525418
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
In lossless watermarking, it is possible to completely remove the embedding distortion from the watermarked image and recover an exact copy of the original unwatermarked image. Lossless watermarks found applications in fragile authentication, integrity protection, and metadata embedding. It is especially important for medical and military images. Frequently, lossless embedding disproportionably increases the file size for image formats that contain lossless compression (RLE BMP, GIF, JPEG, PNG, etc...). This partially negates the advantage of embedding information as opposed to appending it. In this paper, we introduce lossless watermarking techniques that preserve the file size. The formats addressed are RLE encoded bitmaps and sequentially encoded JPEG images. The lossless embedding for the RLE BMP format is designed in such a manner to guarantee that the message extraction and original image reconstruction is insensitive to different RLE encoders, image palette reshuffling, as well as to removing or adding duplicate palette colors. The performance of both methods is demonstrated on test images by showing the capacity, distortion, and embedding rate. The proposed methods are the first examples of lossless embedding methods that preserve the file size for image formats that use lossless compression.
引用
收藏
页码:354 / 365
页数:12
相关论文
共 10 条
[1]   Localized lossless authentication watermark (LAW) [J].
Celik, MU ;
Sharma, G ;
Tekalp, AM ;
Saber, E .
SECURITY AND WATERMARKING OF MULTIMEDIA CONTENTS V, 2003, 5020 :689-698
[2]   Circular interpretation of histogram for reversible watermarking [J].
De Vleeschouwer, C ;
Delaigle, JF ;
Macq, B .
2001 IEEE FOURTH WORKSHOP ON MULTIMEDIA SIGNAL PROCESSING, 2001, :345-350
[3]   Lossless data embedding for all image formats [J].
Fridrich, J ;
Goljan, M ;
Du, R .
SECURITY AND WATERMARKING OF MULTIMEDIA CONTENTS IV, 2002, 4675 :572-583
[4]  
HONSINGER CW, 1999, Patent No. 77102
[5]  
*ITU CCFITT, INF TECHN DIG COMPR
[6]   Capacity bounds and constructions for reversible data-hiding [J].
Kalker, T ;
Willems, FMJ .
SECURITY AND WATERMARKING OF MULTIMEDIA CONTENTS V, 2003, 5020 :604-611
[7]  
LOVASZ L, 1986, ANN DIS MATH, P369
[8]  
MAAS D, P MULT SEC WORKSH AC
[9]  
SAYOOD K, 1996, INTRO DATA COMPRESSI, P87
[10]   Wavelet-based reversible watermarking for authentication [J].
Tian, J .
SECURITY AND WATERMARKING OF MULTIMEDIA CONTENTS IV, 2002, 4675 :679-690