DocumentCode :
3362189
Title :
A proper transform for satisfying Benford´s Law and its application to double JPEG image forensics
Author :
Taimori, Ali ; Razzazi, Farbod ; Behrad, Alireza ; Ahmadi, Amin ; Babaie-Zadeh, Massoud
Author_Institution :
Dept. of Elec. & Comp. Eng., Islamic Azad Univ., Tehran, Iran
fYear :
2012
fDate :
12-15 Dec. 2012
Abstract :
This paper presents a new transform domain to evaluate the goodness of fit of natural image data to the common Benford´s Law. The evaluation is made by three statistical fitness criteria including Pearson´s chi-square test statistic, normalized cross correlation and a distance measure based on symmetrized Kullback-Leibler divergence. It is shown that the serial combination of variance filtering and block 2-D discrete cosine transform reveals the best goodness of fit for the first significant digit. We also show that the proposed transform domain brings reasonable fit for the second, third and fourth significant digits. As an application, the proposed transform domain is utilized to detect image manipulation by distinguishing single compressed images from doubly compressed ones.
Keywords :
data compression; discrete cosine transforms; filtering theory; image coding; image forensics; statistical analysis; 2D discrete cosine transform; Benford law; Kullback-Leibler divergence; Pearson chi-square test statistic; double JPEG image forensics; image manipulation; natural image data; normalized cross correlation; single compressed images; statistical fitness criteria; transform domain; variance filtering; Discrete wavelet transforms; Lighting; Matched filters; Benford´s Law; discrete cosine transform; double JPEG; image forensics; significant digits statistics; variance filter;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing and Information Technology (ISSPIT), 2012 IEEE International Symposium on
Conference_Location :
Ho Chi Minh City
Print_ISBN :
978-1-4673-5604-6
Type :
conf
DOI :
10.1109/ISSPIT.2012.6621294
Filename :
6621294
Link To Document :
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