Pan / Huang / Zhao | Recent Advances in Information Hiding and Applications | E-Book | www.sack.de
E-Book

E-Book, Englisch, 234 Seiten

Pan / Huang / Zhao Recent Advances in Information Hiding and Applications


1. Auflage 2012
ISBN: 978-3-642-28580-6
Verlag: Springer
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)

E-Book, Englisch, 234 Seiten

ISBN: 978-3-642-28580-6
Verlag: Springer
Format: PDF
Kopierschutz: Adobe DRM (»Systemvoraussetzungen)



This research book presents a sample of recent advances in information hiding techniques and their applications. It includes:

Image data hiding scheme based on vector quantization and image graph coloring

The copyright protection system for Android platform

Reversible data hiding

ICA-based image and video watermarking

Content-based invariant image watermarking

Single bitmap block truncation coding of color images using cat swarm optimization

Genetic-based wavelet packet watermarking for copyright protection

Lossless text steganography in compression coding

Fast and low-distortion capacity acoustic synchronized acoustic-to-acoustic steganography scheme

Video watermarking with shot detection.



Pan / Huang / Zhao Recent Advances in Information Hiding and Applications jetzt bestellen!

Weitere Infos & Material


1;Title Page;2
2;Preface;5
3;Table of Contents;8
4;List of Contributors;12
5;An Image Data Hiding Scheme Based on VectorQuantization and Graph Coloring;14
5.1;Introduction;14
5.2;Related Works;15
5.2.1;Vector Quantization;15
5.2.2;Graph Coloring;16
5.2.3;Particle Swarm Optimization;17
5.3;Proposed Scheme;17
5.3.1;Embedding Phase;18
5.3.2;Extracting Phase;18
5.3.3;Embedding and Extracting Example;19
5.4;Experimental Results;21
5.5;Conclusions;29
5.6;References;29
6;The Copyright Protection System for Android Platform;31
6.1;Introduction;31
6.2;Related Works;32
6.3;Automatic Photograph Publishing System;33
6.3.1;Procedures for Automatic Photograph Publishing;33
6.3.2;The Watermark Embedding Process;35
6.3.3;Optimal Method for Embedding Binary Value;36
6.3.4;The Watermark Extraction Process;37
6.4;Experimental Results;38
6.5;Conclusion;43
6.6;References;44
7;Reversible Data Hiding by Coefficient Adjustment Algorithm;45
7.1;Introduction;45
7.1.1;Difference Expansion Techniques;46
7.1.2;Histogram-Based Schemes;46
7.1.3;Prediction-Based Methods;47
7.1.4;Interpolation-Based Algorithms;48
7.1.5;Robustness-Oriented Approaches;48
7.1.6;Human Visual System;48
7.2;Coefficient Adjustment Algorithm;49
7.2.1;Bit Embedding;49
7.2.2;Bit Extraction;50
7.2.3;Overhead Information Analysis;50
7.3;Data Hiding in the Spatial Domain;50
7.3.1;Use of a Codebook;50
7.3.2;Use of a Prediction Mean;51
7.4;Data Hiding in the Frequency Domain;53
7.5;Experimental Results;54
7.5.1;CA Algorithm with the Use of Codebook;54
7.5.2;CA Algorithm with the Use of Prediction Mean;56
7.5.3;Robust Version of the CA Algorithm;57
7.5.4;Performance Comparison and Discussions;58
7.6;Conclusion;62
7.7;References;62
8;ICA-Based Image and Video Watermarking;65
8.1;Introduction of Independent Component Analysis;65
8.2;Independent Feature of Image and Video;67
8.2.1;Independent Feature of Image;67
8.2.2;Independent Feature of Video;72
8.3;ICA-Based Image Watermark;76
8.3.1;ICA-Based Watermark Detection and Extraction;76
8.3.2;Watermarking Based on Independent Image Block Feature;78
8.3.3;Watermarking Based on Independent Downsampling Feature;81
8.4;ICA-Based Video Watermark Schemes;85
8.4.1;Watermarking Based on Independent Video Block Feature Liu [35];85
8.4.2;Watermarking Scheme Based on Independent Dynamic Feature Liu [22];88
8.4.3;Watermarking Based on Motion Location in Independent Dynamic Feature Liu [54];98
8.4.4;Watermarking Based on Independent Content Feature Liu [60];105
8.5;References;110
9;Content Based Invariant ImageWatermarking with High Capacity;114
9.1;Introduction;114
9.2;Content Based Watermark Synchronization;116
9.3;High Capacity Watermark Embedding;118
9.3.1;Content Based Embedding;118
9.3.2;Partition Based Embedding;120
9.4;Simulation Results;122
9.4.1;Watermark Invisibility;122
9.4.2;Watermark Robustness;124
9.5;Conclusion;125
9.6;References;127
10;Single Bitmap Block Truncation Coding of Color Images Using Cat Swarm Optimization;129
10.1;Introduction;129
10.2;Related Works;131
10.3;Proposed Scheme;132
10.4;Experimental Results;137
10.5;Conclusions;147
10.6;References;147
11;Application of Genetic-BasedWavelet Packet Watermarking for Copyright Protection;149
11.1;Introduction;149
11.2;Genetic Watermarking in Wavelet Packet Transform;153
11.2.1;Best Basis Selection with GA;153
11.2.2;Adaptive Watermarking in Wavelet Packet Transform;155
11.2.3;Limitations and Flexibilities with the Proposed Method;156
11.3;Experimental Results;157
11.4;Conclusion;161
11.5;References;162
12;Lossless Text Steganography in Compression Coding;164
12.1;Background;164
12.2;Motivation;167
12.3;Related Work;169
12.3.1;Huffman Coding;169
12.3.2;The Scheme by Chang et al.;170
12.3.3;The Scheme by Shim et al.;173
12.4;Proposed Scheme;174
12.4.1;Embedding Procedure;174
12.4.2;Extraction and Recovery Procedure;178
12.5;Experimental Results and Discussion;180
12.6;Conclusions;185
12.7;References;185
12.8;References;185
13;A Fast and Low-Distortion Capacity Adaptive Synchronized Acoustic-to-Acoustic Steganography Scheme;189
13.1;Introduction;189
13.2;Problems with Conventional Methods;190
13.2.1;Difference between Hiding Secret Messeages in Images and Acoustic Data;190
13.2.2;Conventional Methods of Acoustic Steganography and Their Problems;191
13.2.3;Contribution;192
13.2.4;Example Application;193
13.3;Synchronized Acoustic Steganography Using WAV Data;194
13.3.1;Statement of Purpose;194
13.3.2;Acoustic Data Function;195
13.3.3;Principle of Synchronized Steganography;197
13.3.4;Algorithms;198
13.4;Experimental Evaluation;203
13.4.1;Evaluated Data;203
13.4.2;Evaluation Methods of Embedding Quality;204
13.4.3;Experiments and Results;205
13.4.4;Evaluation of Real-Time Performance;209
13.5;Conclusion;210
13.6;Future Work;210
13.7;Appendix;211
13.8;References;216
14;Video Watermarking with Shot Detection;218
14.1;Introduction;218
14.2;Embedding Algorithm;219
14.2.1;Shot Detector;220
14.2.2;Clustering;220
14.2.3;DWT and DWT Coefficient Converter;220
14.2.4;Watermark Embedder;222
14.3;Extracting Algorithm;223
14.4;Experimental Results;224
14.4.1;Visual Quality;224
14.4.2;Robustness;225
14.5;Conclusion;233
14.6;References;233
15;Subject Index;235



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