Visible watermark removal scheme based on reversible data hiding and image inpainting

Author:

Qin Chuan,He Zhihong,Yao Heng,Cao Fang,Gao Liping

Funder

National Natural Science Foundation of China

National Laboratory of Pattern Recognition

Shenzhen Key Laboratory of Media Security

Shanghai Key Laboratory of Data Science

Shanghai Key Science and Technology Project in Information Technology Field

Natural Science Foundation of Shanghai

Shanghai Leading Academic Discipline Project

Shanghai Engineering Center Project of Massive Internet of Things Technology for Smart Home

Hujiang Foundation of China

PAPD Fund

CICAEET Fund

Publisher

Elsevier BV

Subject

Electrical and Electronic Engineering,Computer Vision and Pattern Recognition,Signal Processing,Software

Reference36 articles.

1. Effective and efficient image copy detection with resistance to arbitraryrotation;Zhou;IEICE Trans. Inf. Syst.,2016

2. Self-embedding fragile watermarking with restoration capability based on adaptive bit allocation mechanism;Qin;Signal Process.,2012

3. Segmentation-based image copy-move forgery detection scheme;Li;IEEE Trans. Inf. Forensics Secur.,2015

4. Forensics feature analysis in quaternion wavelet domain for distinguishing photographicimages and computer graphics;Wang;Multimedia Tools Appl.,2016

5. A novel image hashing scheme with perceptual robustness using block truncation coding;Qin;Inform. Sci.,2016

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