1 Reversible image hiding scheme using predictive coding and histogram shifting Source: Signal Processing, vol. 89, no. 6, June 2009, pp. 1129-1143. Author:

Slides:



Advertisements
Similar presentations
Reversible Data Hiding Based on Two-Dimensional Prediction Errors
Advertisements

1 Adjustable prediction-based reversible data hiding Authors: Chin-Feng Lee and Hsing-Ling Chen Source: Digital Signal Processing, Vol. 22, No. 6, pp.
A reversible data hiding method by histogram shifting in high quality medical images Author: Li-Chin Huang, Lin-Yu Tseng, Min-Shiang Hwang Source: The.
多媒體網路安全實驗室 Source:International Conference on Intelligent Information Hiding and Multimedia Signal Processing (IIH- MSP),2010 Sixth. Authors:Hsiang-Cheh.
Piyu Tsia,Yu-Chen Hu,Hsiu-Lien Yen Signal Processing 日期 :1 月 4 號 報告者 : 許睿中.
Reversible data hiding based on histogram shifting scheme Reporter: Date: Wan-Yu Lu 2012/12/13.
Source: Signal Processing, Vol. 89, Issue 6, June 2009, Pages Author: Piyu Tsai, Yu-Chen Hu, and Hsui-Lien Yeh Speaker: Hon-Hang Chang Date:
Steganography of Reversible Data Hiding Producer: Chia-Chen Lin Speaker: Paul 2013/06/26.
Improved PVO-based reversible data hiding Source: Digital Signal Processing, 2014 Authors: Fei Peng, Xiaolong Li,ng Reporter: Min-Hao Wu.
1 Reversible data hiding for high quality images using modification of prediction errors Source: The Journal of Systems and Software, In Press, Corrected.
Adjustable prediction-based reversible data hiding Source: Authors: Reporter: Date: Digital Signal Processing, Vol. 22, No. 6, pp , 2012 Chin-Feng.
Reversible image hiding scheme using predictive coding and histogram shifting Source: Authors: Reporter: Date: Signal Processing, Vol.89, Issue 6, pp ,
Reversible Date Hiding Based on Histogram Modification of pixel Differences IEEE Transactions on circuits and systems for video technology, VOL. 19, NO.
1 Information Hiding Based on Search Order Coding for VQ Indices Source: Pattern Recognition Letters, Vol.25, 2004, pp.1253 – 1261 Authors: Chin-Chen Chang,
A lossless data hiding scheme based on three- pixel block differences Ching-Chiuan Lin and Nien-Lin Hsueh Pattern Recognition, Vol. 41(4), April 2008 Pages.
Reporter :Chien-Wen Huang Date : Information Sciences, Vol. 176, No. 22, Nov. 2006, pp Received 29 December 2004; received in revised.
多媒體網路安全實驗室 Source: IEICE Trans. Fundamentals, Vol. E90-A, No. 4, April 2007, pp Authors:Hong Lin Jin, Masaaki Fujiyoshi, Hitoshi Kiya Speaker:Cheng.
南台科技大學 資訊工程系 Data hiding based on the similarity between neighboring pixels with reversibility Author:Y.-C. Li, C.-M. Yeh, C.-C. Chang. Date:
1 LSB Matching Revisited Source: IEEE Signal Processing Letters (Accepted for future publication) Authors: Jarno Mielikainen Speaker: Chia-Chun Wu ( 吳佳駿.
1 Reversible visible watermarking and lossless recovery of original images Source: IEEE transactions on circuits and systems for video technology, vol.
1 Adaptive Data Hiding in Edge Areas of Images with Spatial LSB Domain Systems Source: IEEE Transactions on Information Forensics and Security, Vol. 3,
Palette Partition Based Data Hiding for Color Images
Reversible Data Hiding in JPEG Images using Ordered Embedding
Reversible data hiding with contrast enhancement using adaptive histogram shifting and pixel value ordering Source: Signal Processing: Image Communication.
Reversible data hiding scheme based on significant-bit-difference expansion Sourse: IET Image Processing ( Volume: 11, Issue: 11, ), Pages 1002.
Mean value based reversible data hiding in encrypted images
Hybrid Data Hiding Scheme Using Right-Most Digit Replacement and Adaptive Least Significant Bit for Digital Images Source: Symmetry, vol. 8, no. 6, June.
Yongjian Hu, Member, IEEE, Heung-Kyu Lee, Kaiying Chen, and Jianwei Li
A Restricted Region-based Data-hiding Scheme
An efficient reversible data hiding method for AMBTC compressed images
Reversible data hiding with contrast enhancement using adaptive histogram shifting and pixel value ordering Source: Signal Processing: Image Communication.
Source : Signal Processing, vol. 126, pp ,  November 2016
Skewed Histogram Shifting for Reversible Data Hiding using a Pair of Extreme Predictions Source: IEEE Transactions on Circuits and Systems for Video Technology(
An efficient reversible image authentication method using improved PVO and LSB substitution techniques Source : Signal Processing: Image Communication,
Source:. IEEE TRANSACTIONS ON INFORMATION FORENSICS AND SECURITY, VOL
Source: IEEE Access, Vol. 6, Dec. 2017, pp
An AMBTC compression based data hiding scheme using pixel value adjusting strategy Sourse: Multidimensional Systems and Signal Processing, Volume 29,
An AMBTC compression based data hiding scheme using pixel value adjusting strategy Sourse: Multidimensional Systems and Signal Processing, Volume 29,
Reversible Data Hiding in JPEG Images
Source : Journal of Visual Communication and Image Representation, vol
Reversible data hiding in encrypted images based on absolute mean difference of multiple neighboring pixels Source: Journal of Visual Communication and.
Data hiding method using image interpolation
Skewed Histogram Shifting for Reversible Data Hiding using a Pair of Extreme Predictions Source: IEEE Transactions on Circuits and Systems for Video Technology(
Dynamic embedding strategy of VQ-based information hiding approach
Source : Journal of Visual Communication and Image Representation, vol
Partial reversible data hiding scheme using (7, 4) hamming code
High-fidelity reversible data hiding based on pixel-value-ordering and pairwise prediction-error expansion Source: Journal of Visual Communication and.
High Capacity Data Hiding for Grayscale Images
Data hiding method using image interpolation
Partial reversible data hiding scheme using (7, 4) hamming code
New Framework for Reversible Data Hiding in Encrypted Domain
Multi-Tier and Multi-Bit Reversible Data Hiding with Contents Characteristics Source : Journal of Information Hiding and Multimedia Signal Processing, Volume.
Source: J. Vis. Commun. Image R. 31 (2015) 64–74
Unconstraint Optimal Selection of Side Information for Histogram Shifting Based Reversible Data Hiding Source:  IEEE Access. March, doi: /ACCESS
Source: IEICE-Transactions on Info and Systems
Source: Signal Processing Volume 111 June 2015, Pages
Source: IEEE Access. (2019/05/13). DOI: /ACCESS
Source: Pattern Recognition, Volume 40, Issue 2, February 2007, pp
Pairwise IPVO-Based Reversible Data Hiding
Source: IET Image Processing, Vol. 4, No. 4, Aug. 2010, pp
Authors: Chin-Chen Chang, Yi-Hui Chen, and Chia-Chen Lin
Dynamic improved pixel value ordering reversible data hiding
Lossless Data Hiding in the Spatial Domain for High Quality Images
Reversible data hiding with contrast enhancement using adaptive histogram shifting and pixel value ordering Source: Signal Processing: Image Communication.
High-Capacity Data Hiding in Halftone Images Using Minimal-Error Bit Searching and Least-Mean Square Filter Author: Soo-Chang Pei and Jing-Ming Guo Source:
Source: Multidim Syst Sign Process, vol. 29, no. 4, pp , 2018
A Restricted Region-based Data-hiding Scheme
Privacy-Preserving Reversible Watermarking for Data Exfiltration Prevention Through Lexicographic Permutations Source: IIH-MSP(2018): Authors:
Adopting secret sharing for reversible data hiding in encrypted images
Reversible data hiding in encrypted binary images by pixel prediction
Presentation transcript:

1 Reversible image hiding scheme using predictive coding and histogram shifting Source: Signal Processing, vol. 89, no. 6, June 2009, pp Author: Piyu Tsai, Yu-Chen Hu, and Hsui-Lien Yeh Speaker: Chia-Chun Wu Date: 2009/10/30

2 Outline Introduce histogram-based reversible data hiding scheme The proposed method and how to increase hiding capacity Experiment Conclusion

3 Introduction Histogram-based reversible data hiding Original image Stego image Peak value=6 Zero value=4, we noted: (6,4) Secret= Only peak value can hide data, If secret value=0,shift peak value closer to zero. Histogram of original image

4 The proposed method (1/4) Step1: Linear prediction Original Image Residual Image histogram of residual image Basic pixel

5 The proposed method (2/4) Step2: find peak and zero value, shift residual value Peak value=-3 Zero value=-1 Peak value=1 Zero value= Residual imageShifted residual value

6 The proposed method (3/4) Secret bit: , (1,3) (-3,-1) If secret bit=0, shift peak value Hiding area After hiding secret Stego image Residual image

7 The proposed method (4/4) Overlapping scheme for increasing hiding capacity pick two pair: (0,3) (1,4) 1.If secret bit=1, peak value 0 is unchanged If secret bit=0, peak value 0 is modified to 1 2. If secret bit=1, peak value 1 is modified to 2 If secret bit=0, peak value 1 is modified to 3 3. Residual value 2 is modified to 4

8 Experiments (1/2) Original image and histogramStego image and histogram

9 Experiments (2/2)

10 Conclusions The proposed method can provide higher hiding capacity then histogram-based data hiding scheme. Besides, the quality is good.