DocumentCode :
4247
Title :
Revealing the Trace of High-Quality JPEG Compression Through Quantization Noise Analysis
Author :
Bin Li ; Tian-Tsong Ng ; Xiaolong Li ; Shunquan Tan ; Jiwu Huang
Author_Institution :
Coll. of Inf. Eng., Shenzhen Univ., Shenzhen, China
Volume :
10
Issue :
3
fYear :
2015
fDate :
Mar-15
Firstpage :
558
Lastpage :
573
Abstract :
To identify whether an image has been JPEG compressed is an important issue in forensic practice. The state-of-the-art methods fail to identify high-quality compressed images, which are common on the Internet. In this paper, we provide a novel quantization noise-based solution to reveal the traces of JPEG compression. Based on the analysis of noises in multiple-cycle JPEG compression, we define a quantity called forward quantization noise. We analytically derive that a decompressed JPEG image has a lower variance of forward quantization noise than its uncompressed counterpart. With the conclusion, we develop a simple yet very effective detection algorithm to identify decompressed JPEG images. We show that our method outperforms the state-of-the-art methods by a large margin especially for high-quality compressed images through extensive experiments on various sources of images. We also demonstrate that the proposed method is robust to small image size and chroma subsampling. The proposed algorithm can be applied in some practical applications, such as Internet image classification and forgery detection.
Keywords :
data compression; discrete cosine transforms; image coding; image sampling; quantisation (signal); JPEG image decompression; chroma subsampling; detection algorithm; discrete cosine transform; forward quantization noise; high-quality JPEG compression; multiple-cycle JPEG compression; quantization noise analysis; Discrete cosine transforms; Forensics; Image coding; Noise; Quantization (signal); Transform coding; Upper bound; Discrete cosine transform (DCT); Dynamic dead-time controller; compression identification; forgery detection; forward quantization noise; high-frequency boost converters; high-voltage synchronous gate driver; quasi-square-wave zero-voltage switching; zero-voltage switching technique;
fLanguage :
English
Journal_Title :
Information Forensics and Security, IEEE Transactions on
Publisher :
ieee
ISSN :
1556-6013
Type :
jour
DOI :
10.1109/TIFS.2015.2389148
Filename :
7001657
Link To Document :
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