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A Curiosity Regarding Steganographic Capacity of Pathologically Nonstationary Sources

机译:关于病理非平稳来源隐写能力的好奇心

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Square root laws state that the capacity of an imperfect stegosystem - where the embedding does not preserve the cover distribution exactly - grows with the square root of cover size. Such laws have been demonstrated empirically and proved mathematically for a variety of situations, but not for nonstationary covers. Our aim here is to examine a highly simplified nonstationary source, which can have pathological and unpredictable behaviour. Intuition suggests that, when the cover source distribution is not perfectly known in advance, it should be impossible to distinguish covers and stego objects because the detector can never learn enough information about the varying cover source. However we show a strange phenomenon, whereby it is possible to distinguish stego and cover objects as long as the cover source is stationary for two pixels at a time, and then the capacity follows neither a square root law nor a linear law.
机译:平方根定律指出,不完善的隐身系统的容量(其中嵌入不能精确保留封面分布)随封面大小的平方根增长。已经针对各种情况通过经验证明了这些定律,并在数学上证明了这些定律,但对于非平稳的掩盖则没有。我们的目的是检查高度简化的非平稳源,该源可能具有病理性和不可预测的行为。直觉表明,如果事先不完全了解掩盖源的分布,则应该不可能区分掩盖和隐身物体,因为检测器永远无法了解有关变化的掩盖源的足够信息。但是,我们展示了一个奇怪的现象,即只要掩盖源一次固定两个像素,就可以区分隐身物体和掩盖物体,然后电容既不遵循平方根定律,也不遵循线性定律。

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