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The Scalar Scheme for Reversible Information-Embedding in Gray-Scale Signals: Capacity Evaluation and Code Constructions

机译:灰度信号中可逆信息嵌入的标量方案:容量评估和代码构造

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Reversible information-embedding (RIE) is a technique transforming host signals and the message into the stego-signals, and the stego-signals can be losslessly reversed to the host signals and the message. We consider the conditions: 1) the host signals are composed of gray-scale independent and identically distributed (i.i.d.) samples; 2) the mean squared error is adopted as the measure of distortion; and 3) the procedure is a scalar approach, i.e., the encoder only reads a host signal and then outputs the corresponding stego-signal in each iteration. In this paper, we propose an iterative algorithm to calculate the signal transition probabilities approximating the optimal rate-distortion bound. Then we propose an explicit implementation to embed a message in an i.i.d. host sequence. The experiments show that the proposed method closely approaches the expected rate-distortions in i.i.d. gray-scale signals. By the image prediction model, the proposed method can be applied to gray-scale images.
机译:可逆信息嵌入(RIE)是一种将主机信号和消息转换为隐秘信号的技术,隐秘信号可以无损地逆转为宿主信号和消息。我们考虑以下条件:1)主机信号由独立于灰度且分布均匀的(i.i.d.)样本组成; 2)采用均方误差作为失真的量度; 3)该过程是一种标量方法,即编码器仅读取主机信号,然后在每次迭代中输出相应的隐身信号。在本文中,我们提出了一种迭代算法来计算近似最佳速率失真范围的信号转移概率。然后,我们提出了一个明确的实现方式来将消息嵌入到i.d.宿主序列。实验表明,所提出的方法在i.i.d中非常接近预期的速率失真。灰度信号。通过图像预测模型,所提出的方法可以应用于灰度图像。

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