DocumentCode :
53448
Title :
Robust Hashing for Image Authentication Using Zernike Moments and Local Features
Author :
Zhao, Yan ; Wang, Shuozhong ; Zhang, Xinpeng ; Yao, Heng
Author_Institution :
Sch. of Commun. & Inf. Eng., Shanghai Univ., Shanghai, China
Volume :
8
Issue :
1
fYear :
2013
fDate :
Jan. 2013
Firstpage :
55
Lastpage :
63
Abstract :
A robust hashing method is developed for detecting image forgery including removal, insertion, and replacement of objects, and abnormal color modification, and for locating the forged area. Both global and local features are used in forming the hash sequence. The global features are based on Zernike moments representing luminance and chrominance characteristics of the image as a whole. The local features include position and texture information of salient regions in the image. Secret keys are introduced in feature extraction and hash construction. While being robust against content-preserving image processing, the hash is sensitive to malicious tampering and, therefore, applicable to image authentication. The hash of a test image is compared with that of a reference image. When the hash distance is greater than a threshold τ1 and less than τ2, the received image is judged as a fake. By decomposing the hashes, the type of image forgery and location of forged areas can be determined. Probability of collision between hashes of different images approaches zero. Experimental results are presented to show effectiveness of the method.
Keywords :
brightness; cryptography; feature extraction; image coding; image sequences; image texture; Zernike moments; abnormal color modification; chrominance characteristics; content-preserving image processing; feature extraction; forged area location; global features; hash construction; hash distance; hash sequence; image authentication; image forgery detection; local features; luminance characteristics; malicious tampering; object insertion; object removal; object replacement; position information; robust hashing method; salient regions; secret keys; texture information; Authentication; Educational institutions; Feature extraction; Forgery; Robustness; Transforms; Vectors; Forgery detection; Zernike moments; image hash; perceptual robustness; saliency;
fLanguage :
English
Journal_Title :
Information Forensics and Security, IEEE Transactions on
Publisher :
ieee
ISSN :
1556-6013
Type :
jour
DOI :
10.1109/TIFS.2012.2223680
Filename :
6327664
Link To Document :
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