DocumentCode :
112921
Title :
Carving Orphaned JPEG File Fragments
Author :
Uzun, Erkam ; Sencar, Husrev Taha
Author_Institution :
TOBB Univ. of Econ. & Technol., Ankara, Turkey
Volume :
10
Issue :
8
fYear :
2015
fDate :
Aug. 2015
Firstpage :
1549
Lastpage :
1563
Abstract :
File carving techniques allow for recovery of files from storage devices in the absence of any file system metadata. When data are encoded and compressed, the current paradigm of carving requires the knowledge of the compression and encoding settings to succeed. In this paper, we advance the state of the art in JPEG file carving by introducing the ability to recover fragments of a JPEG file when the associated file header is missing. To realize this, we examined JPEG file headers of a large number of images collected from Flickr photo sharing site to identify their structural characteristics. Our carving approach utilizes this information in a new technique that performs two tasks. First, it decompresses the incomplete file data to obtain a spatial domain representation. Second, it determines the spatial domain parameters to produce a perceptually meaningful image. Recovery results on a variety of JPEG file fragments show that given the knowledge of Huffman code tables, our technique can very reliably identify the remaining decoder settings for all fragments of size 4 KiB or above. Although errors due to detection of image width, placement of image blocks, and color and brightness adjustments can occur, these errors reduce significantly when fragment sizes are >32 KiB.
Keywords :
Huffman codes; brightness; data compression; image coding; image colour analysis; social networking (online); Flickr photo sharing site; Huffman code tables; JPEG file carving; associated file header; brightness adjustments; color adjustments; compression settings; decoder settings; encoding settings; file carving techniques; file system metadata; image blocks; image width detection; orphaned JPEG file fragment; spatial domain representation; storage devices; structural characteristics; Decoding; Encoding; Image coding; Image color analysis; Quantization (signal); Standards; Transform coding; File carving; Huffman codes; JPEG coding; file fragmentation;
fLanguage :
English
Journal_Title :
Information Forensics and Security, IEEE Transactions on
Publisher :
ieee
ISSN :
1556-6013
Type :
jour
DOI :
10.1109/TIFS.2015.2416685
Filename :
7067355
Link To Document :
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