Title :
Image Forgery Detection Using Adaptive Oversegmentation and Feature Point Matching
Author :
Chi-Man Pun ; Xiao-Chen Yuan ; Xiu-Li Bi
Author_Institution :
Dept. of Comput. & Inf. Sci., Univ. of Macau, Macau, China
Abstract :
A novel copy-move forgery detection scheme using adaptive oversegmentation and feature point matching is proposed in this paper. The proposed scheme integrates both block-based and keypoint-based forgery detection methods. First, the proposed adaptive oversegmentation algorithm segments the host image into nonoverlapping and irregular blocks adaptively. Then, the feature points are extracted from each block as block features, and the block features are matched with one another to locate the labeled feature points; this procedure can approximately indicate the suspected forgery regions. To detect the forgery regions more accurately, we propose the forgery region extraction algorithm, which replaces the feature points with small superpixels as feature blocks and then merges the neighboring blocks that have similar local color features into the feature blocks to generate the merged regions. Finally, it applies the morphological operation to the merged regions to generate the detected forgery regions. The experimental results indicate that the proposed copy-move forgery detection scheme can achieve much better detection results even under various challenging conditions compared with the existing state-of-the-art copy-move forgery detection methods.
Keywords :
approximation theory; feature extraction; image colour analysis; image matching; image segmentation; mathematical morphology; object detection; adaptive irregular block; adaptive nonoverlapping block; adaptive oversegmentation algorithm; block feature matching; block-based forgery detection method; copy-move forgery detection scheme; feature point extraction; feature point matching; forgery region extraction algorithm; image forgery detection; keypoint-based forgery detection method; labeled feature points; local color features; morphological operation; Digital images; Discrete wavelet transforms; Feature extraction; Forgery; Image color analysis; Image segmentation; Adaptive Over-Segmentation; Copy-Move Forgery Detection; Copy-move forgery detection; Forgery Region Extraction; Local Color Feature; adaptive over-segmentation; forgery region extraction; local color feature;
Journal_Title :
Information Forensics and Security, IEEE Transactions on
DOI :
10.1109/TIFS.2015.2423261