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ADAPTIVE REVERSIBLE DATA HIDING SCHEME FOR DIGITAL IMAGES BASED ON HISTOGRAM SHIFTING

机译:基于直方图变换的数字图像自适应可逆数据隐藏方案

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Existing histogram based reversible data hiding schemes use only absolute difference values between the neighboring pixels of a cover image. In these schemes, maxima and minima points at maximum distance are selected in all the blocks of the image which causes shifting of the large number of pixels to embed the secret data. This shifting produces more degradation in the visual quality of the marked image. In this work, the cover image is segmented into blocks, which are classified further into complex and smooth blocks using a threshold value. This threshold value is optimized using firefly algorithm. Simple difference values between the neighboring pixels of complex blocks have been utilized to embed the secret data bits. The closest maxima and minima points in the histogram of the difference blocks are selected so that number of shifted pixels get reduced, which further reduces the distortion in the marked image. Experimental results prove that the proposed scheme has better performance as compared to the existing schemes. The scheme shows minimum distortion and large embedding capacity. Novelty of work is the usage of negative difference values of complex blocks for secret data embedding with the minimal number of pixel shifting.
机译:现有的基于直方图的可逆数据隐藏方案仅使用封面图像相邻像素之间的绝对差值。在这些方案中,在图像的所有块中选择了最大距离处的最大和最小点,这导致大量像素移动以嵌入秘密数据。这种偏移使标记图像的视觉质量进一步下降。在这项工作中,将封面图像分割为多个块,然后使用阈值将其进一步分为复杂块和平滑块。使用萤火虫算法优化此阈值。复杂块的相邻像素之间的简单差值已用于嵌入秘密数据位。选择差异块的直方图中最接近的最大值和最小值,以便减少移位像素的数量,从而进一步减少标记图像中的失真。实验结果证明,与现有方案相比,该方案具有更好的性能。该方案显示出最小的失真和较大的嵌入能力。工作的新颖性是将复杂块的负差值用于秘密数据嵌入,且像素移动量最少。

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