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Cover Image Selection for Embedding Based on Different Criteria

机译:基于不同准则的封面图像嵌入选择

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The main goal of image steganography techniques is to maximize embedding rate while minimizing the change of the cover image after embedding. Much work has been done on how sender would embed the secret message in the cover image (i.e. embedding techniques) but there is a few works focus on how the senders choose the cover images. One advantage of image steganography is that the cover image only acts as a carrier for the message and the embedder (sender) has the freedom to choose a cover image amongst a set of cover images those results in the least detectable stego image. The way of choosing the cover image is important and since it is available to the sender both the cover and stego images, then the senders are able to measure the embedding artifacts directly. Thus, we are interested in measures which are able to quantify such artifacts. We can use the cover-stego based on measures which we have employed in our work to select best cover image among set of images. The measures used are (1) Number of Modifications to the cover image could be thought as the most intuitive. The smaller the number of changes made the less detectable the resulting stego image should be, (2) Peak Signal to Noise Ratio (PSNR) which is obtained from the cover-stego image pairs where higher PSNR values are assumed to be indicative of lesser delectability, or (3) Based on the robustness to the steganalysis techniques. For the experiments we used a dataset of gray scale images with size of 512×512 resolutions as a cover image with different secret message size from 0.2 to 1.0 bits per pixel.
机译:图像隐写技术的主要目标是最大化嵌入率,同时最小化嵌入后的封面图像变化。关于发件人如何将秘密消息嵌入封面图像中的工作很多(即嵌入技术),但是有一些工作着眼于发件人如何选择封面图像。图像隐写术的一个优点是,封面图像仅充当消息的载体,并且嵌入程序(发件人)可以自由选择一组封面图像中的封面图像,从而导致可检测到的隐身图像最少。选择封面图像的方法很重要,并且由于发送方可以同时使用封面和隐秘图像,因此发送方可以直接测量嵌入的伪像。因此,我们对能够量化此类伪像的措施感兴趣。我们可以根据我们在工作中采用的措施使用掩护隐身,以在一组图像中选择最佳掩护图像。使用的措施是(1)可以认为对封面图像的修改数量是最直观的。更改的次数越少,所得的隐身图像应越难被检测到;(2)峰值信噪比(PSNR)从覆盖隐身图像对中获得,其中较高的PSNR值被认为表示较小的可反射性,或(3)基于隐写分析技术的鲁棒性。对于实验,我们使用具有512×512分辨率大小的灰度图像的数据集作为封面图像,其秘密消息的大小从每像素0.2到1.0位不等。

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