TCBR and TCBD: Evaluation metrics for tamper coincidence problem in fragile image watermarking

被引:5
作者
Aminuddin, Afrig [1 ,2 ]
Ernawan, Ferda [1 ]
Nincarean, Danakorn [1 ]
Amrullah, Agit [1 ,2 ]
Ariatmanto, Dhani [2 ]
机构
[1] Univ Malaysia Pahang Al Sultan Abdullah, Fac Comp, Pekan 26600, Pahang, Malaysia
[2] Univ Amikom Yogyakarta, Fac Comp Sci, Sleman 55283, Yogyakarta, Indonesia
来源
ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH | 2024年 / 56卷
关键词
Block mapping; Image authentication; Image watermarking; Self-recovery; Tamper coincidence problem; Tamper localization; SELF-RECOVERY; SCHEME; LOCALIZATION; RESTORATION;
D O I
10.1016/j.jestch.2024.101790
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This paper proposed two evaluation metrics of the tamper coincidence in a block map design for image watermarking. These evaluation metrics are called Tamper Coincidence Block Ratio (TCBR) and Tamper Coincidence Block Density (TCBD). A tamper coincidence occurred in image authentication and self-recovery when the recovery data and the original block location were tampered with simultaneously. A high tamper coincidence limits image inpainting's capability to recover the region, leading to an imprecise recovered image. The ratio and density of the tamper coincidence may significantly affect the final recovered image quality. Previously, researchers mentioned the tamper coincidence in their experiment but did not evaluate it with any metrics. They evaluated the robustness of their technique based on the final recovered image quality using the Peak Signal-toNoise Ratio (PSNR) and Structural Similarity Index Measure (SSIM). Tamper coincidences are primarily affected by the block map design implemented by the researcher. Thus, TCBR and TCBD provide valuable insight into the block map design's effectiveness in preventing tamper coincidence. The experimental result shows that the TCBR and TCBD values are inversely proportional to the recovered image quality. A high TCBR and TCBD value leads to low recovered image quality. Therefore, this paper will help the researchers design an effective block map by minimizing the TCBR and TCBD values to obtain the highest recovered image quality.
引用
收藏
页数:12
相关论文
共 26 条
[11]   TRLH: Fragile and blind dual watermarking for image tamper detection and self-recovery based on lifting wavelet transform and halftoning technique [J].
Haghighi, Behrouz Bolourian ;
Taherinia, Amir Hossein ;
Harati, Ahad .
JOURNAL OF VISUAL COMMUNICATION AND IMAGE REPRESENTATION, 2018, 50 :49-64
[12]   Alterable-capacity fragile watermarking scheme with restoration capability [J].
Huo, Yaoran ;
He, Hongjie ;
Chen, Fan .
OPTICS COMMUNICATIONS, 2012, 285 (07) :1759-1766
[13]   An effective fragile watermarking scheme for color image tampering detection and self-recovery [J].
Molina-Garcia, Javier ;
Garcia-Salgado, Beatriz P. ;
Ponomaryov, Volodymyr ;
Reyes-Reyes, Rogelio ;
Sadovnychiy, Sergiy ;
Cruz-Ramos, Clara .
SIGNAL PROCESSING-IMAGE COMMUNICATION, 2020, 81
[14]   Image authentication and recovery: Sudoku puzzle and MD5 hash algorithm based self-embedding fragile image watermarking method [J].
Renklier, Ayhan ;
Ozturk, Serkan .
MULTIMEDIA TOOLS AND APPLICATIONS, 2024, 83 (05) :13929-13951
[15]   Color Image Self-Recovery and Tampering Detection Scheme Based on Fragile Watermarking with High Recovery Capability [J].
Reyes-Reyes, Rogelio ;
Cruz-Ramos, Clara ;
Ponomaryov, Volodymyr ;
Garcia-Salgado, Beatriz P. ;
Molina-Garcia, Javier .
APPLIED SCIENCES-BASEL, 2021, 11 (07)
[16]   A logistic map based blind and fragile watermarking for tamper detection and localization in images [J].
Sahu, Aditya Kumar .
JOURNAL OF AMBIENT INTELLIGENCE AND HUMANIZED COMPUTING, 2021, 13 (8) :3869-3881
[17]   PSNR vs SSIM: imperceptibility quality assessment for image steganography [J].
Setiadi, De Rosal Igantius Moses .
MULTIMEDIA TOOLS AND APPLICATIONS, 2021, 80 (06) :8423-8444
[18]   Robust watermarking scheme for color image based on quaternion-type moment invariants and visual cryptography [J].
Shao, Zhuhong ;
Shang, Yuanyuan ;
Zeng, Rui ;
Shu, Huazhong ;
Coatrieux, Gouenou ;
Wu, Jiasong .
SIGNAL PROCESSING-IMAGE COMMUNICATION, 2016, 48 :12-21
[19]   Robust watermarking using orthogonal Fourier-Mellin moments and chaotic map for double images [J].
Shao, Zhuhong ;
Shang, Yuanyuan ;
Zhang, Yu ;
Liu, Xilin ;
Guo, Guodong .
SIGNAL PROCESSING, 2016, 120 :522-531
[20]   A Novel Multipurpose Watermarking Scheme Capable of Protecting and Authenticating Images With Tamper Detection and Localisation Abilities [J].
Sharma, Sunpreet ;
Zou, Ju Jia ;
Fang, Gu .
IEEE ACCESS, 2022, 10 :85677-85700