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Phase based forgery detection of JPEG anti forensics

机译:JPEG反鉴识的基于阶段的伪造检测

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Many recent techniques in forgery detection tried to counter noise dithering, which is well adopted in removing footprints of JPEG editing in any image tampering (anti forensics) process. In this paper we present a novel idea of detecting this noise dithering based on detecting spatial frequency phase variations for different blocks of suspect-able images. We try to measure the level of coherence of phase values for spatial frequencies of image pixels and detect threshold variations/distributions that would indicate some editing or tampering of images. The proposed technique is robust against noise dithering due to the fact that local homogeneous regions inherit distinctive phase values. These phase values are inconsistent with embedded or dithered noise signals that are considered to be out of phase and can be easily detected in noisy environments. Our proposed technique is compared with recent successful literature techniques for performance with degraded tampered/hacked images. Unlike other literature techniques, Our proposed approach does not require the knowledge of the quantization matrix that is typically adopted in original compression for forgery detection, as will be illustrated.
机译:伪造检测中的许多最新技术都试图抵消噪声抖动,该噪声抖动在消除任何图像篡改(反取证)过程中的JPEG编辑的足迹方面已得到广泛采用。在本文中,我们提出了一种基于检测可疑图像不同块的空间频率相位变化来检测这种噪声抖动的新思路。我们尝试为图像像素的空间频率测量相位值的相干水平,并检测可能表示对图像进行某些编辑或篡改的阈值变化/分布。所提出的技术由于局部均质区域继承了独特的相位值而对噪声抖动具有鲁棒性。这些相位值与被认为是异相的嵌入式或抖动噪声信号不一致,并且可以在嘈杂的环境中轻松检测到。将我们提出的技术与最近成功的文献技术进行比较,以了解具有降低的篡改/被入侵图像的性能。与其他文献技术不同,我们提出的方法不需要了解原始伪造检测中通常采用的量化矩阵知识,这将在后面进行说明。

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