Wavelet-based color modification detection based on variance ratio

被引:2
|
作者
Jeon, Jong Ju [1 ]
Eom, Il Kyu [1 ]
机构
[1] Pusan Natl Univ, Dept Elect Engn, 2,Busandaehak Ro 63 Beon Gil, Busan 46241, South Korea
基金
新加坡国家研究基金会;
关键词
Color modification; Image forgery; Color difference; Demosaicing; Variance ratio; Wavelet transform; Color filter array;
D O I
10.1186/s13640-018-0286-6
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Color modification is one of the popular image forgery techniques. It can be used to eliminate criminal evidence in various ways, such as modifying the color of a car used in a crime. If the color of a digital image is modified, the locations of the interpolated and original samples may be changed. Because the original and interpolated pixels have different statistical characteristics, these differences can serve as a basic clue for estimating the degree of color modification. It is assumed that the variance of original samples is greater than that of the interpolated samples. Therefore, we present a novel algorithm for color modification estimation using the variance ratio of color difference images in the wavelet domain. The color difference model is used to emphasize the differences between the original and interpolated samples. For color difference images, we execute a wavelet transform and use the highest frequency subband to calculate variances. We define a variance ratio measurement to quantify the level of color modification. Additionally, changed color local regions can be efficiently detected using the proposed algorithm. Experimental results demonstrate that the proposed method generates accurate estimation results for detecting color modification. Compared to the conventional method, our method provides superior color modification detection performance.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Wavelet-based blotch detection in old movies
    Ammar-Badri, H.
    Benazza-Benyahia, A.
    [J]. 2008 FIRST INTERNATIONAL WORKSHOPS ON IMAGE PROCESSING THEORY, TOOLS AND APPLICATIONS (IPTA), 2008, : 438 - 444
  • [42] A REVIEW OF WAVELET-BASED EDGE DETECTION METHODS
    Wang, P. S. P.
    Yang, Jianwei
    [J]. INTERNATIONAL JOURNAL OF PATTERN RECOGNITION AND ARTIFICIAL INTELLIGENCE, 2012, 26 (07)
  • [43] Wavelet-based pavement distress detection and evaluation
    Zhou, J
    Huang, PS
    Chiang, FP
    [J]. OPTICAL ENGINEERING, 2006, 45 (02)
  • [44] Wavelet-based knock detection with fuzzy logic
    Borg, JM
    Cheok, KC
    Saikalis, G
    Oho, S
    [J]. Proceedings of the 2005 IEEE International Conference on Computational Intelligence for Measurement Systems and Applications, 2005, : 26 - 31
  • [45] Hyperanalytic Wavelet-Based Robust Edge Detection
    Isar, Alexandru
    Nafornita, Corina
    Magu, Georgiana
    [J]. REMOTE SENSING, 2021, 13 (15)
  • [46] Wavelet-based pavement distress detection and evaluation
    Zhou, J
    Huang, PS
    Chiang, FP
    [J]. WAVELETS: APPLICATIONS IN SIGNAL AND IMAGE PROCESSING X, PTS 1 AND 2, 2003, 5207 : 728 - 739
  • [47] Wavelet-based technique for structural damage detection
    Beskhyroun, Sherif
    Oshima, Toshiyuki
    Mikami, Shuichi
    [J]. STRUCTURAL CONTROL & HEALTH MONITORING, 2010, 17 (05): : 473 - 494
  • [48] Wavelet-based transmissibility for structural damage detection
    Dziedziech, Kajetan
    Mendrok, Krzysztof
    Uhl, Tadeusz
    Staszewski, Wieslaw J.
    [J]. CURRENT PERSPECTIVES AND NEW DIRECTIONS IN MECHANICS, MODELLING AND DESIGN OF STRUCTURAL SYSTEMS, 2022, : 617 - 618
  • [49] Wavelet-based detection of clods on a soil surface
    Vannier, E.
    Ciarletti, V.
    Darboux, F.
    [J]. COMPUTERS & GEOSCIENCES, 2009, 35 (11) : 2259 - 2267
  • [50] Wavelet-based acoustic detection of moving vehicles
    Amir Averbuch
    Valery A. Zheludev
    Neta Rabin
    Alon Schclar
    [J]. Multidimensional Systems and Signal Processing, 2009, 20 : 55 - 80