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A New Data Hiding Method Using Adaptive Quantization Dynamic Bit Plane Based AMBTC

机译:一种基于自适应量化和动态位平面的AMBTC数据隐藏新方法

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This paper proposes a novel data hiding method using adaptive quantization & dynamic bit plane based AMBTC technique. In the proposed method, initially, a cover image is partitioned into a set of non-overlapping blocks, then adaptive number of quantization levels and size of the bit-plane for each block is determined, using the complexity level. The secret data is concealed into the bit-planes of the blocks according to their tolerance capability. The secret data is embedded via simple bit replacement strategy. The dynamic categorization of image blocks and determination of number of quantization levels along with the size of bit-planes have significantly contributed in providing high quality marked-image while maintain the same bit-rate. Further, the proposed scheme provides high data hiding capacity as almost every block is being used for hiding the secret data. It is clearly evident from the experimental results that proposed method performs significantly better than the conventional AMBTC based data hiding methods for the hiding capacity and image quality trade-off, without any change in required bit-rate.
机译:本文提出了一种基于自适应量化和动态位平面的AMBTC技术的数据隐藏新方法。在所提出的方法中,首先,将封面图像划分为一组不重叠的块,然后使用复杂度级别确定量化级别的自适应数量和每个块的位平面大小。根据其容忍能力,秘密数据被隐藏在块的位平面中。秘密数据通过简单的位替换策略嵌入。图像块的动态分类以及量化级别的数量以及位平面的大小的确定在提供高质量标记图像的同时保持了相同的位速率上做出了重要贡献。此外,由于几乎每个块都用于隐藏秘密数据,因此所提出的方案提供了高数据隐藏能力。从实验结果可以清楚地看出,对于所需的隐藏能力和图像质量的权衡,所提出的方法的性能明显优于传统的基于AMBTC的数据隐藏方法,而所需的比特率没有任何变化。

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