一种基于量子比特/量子计算的视觉图像水印方案的硬件实现

S. Roy, A. Basu, A. Chattopadhyay
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引用次数: 3

摘要

本章介绍了一种基于LSB替换的数字图像水印算法的硬件实现。该方案是在空间域上发展的。在该水印过程中,通过自适应最后有效位(LSB)替换技术将数据或水印植入到封面图像像素中。本文采用可逆逻辑实现了水印逻辑的实时执行。利用可逆逻辑,通过不丢失信息来降低功耗。更小的功耗使得运算速度更快,同时也符合摩尔定律。实验结果表明,该方法具有较高的不可感知性和鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hardware Implementation of a Visual Image Watermarking Scheme Using Qubit/Quantum Computation Through Reversible Methodology
In this chapter, hardware implementation of an LSB replacement-based digital image watermarking algorithm is introduced. The proposed scheme is developed in spatial domain. In this watermarking process, data or watermark is implanted into the cover image pixels through an adaptive last significant bit (LSB) replacement technique. The real-time execution of the watermarking logic is developed here using reversible logic. Utilization of reversible logic reduces the power dissipation by means of no information loss. The lesser power dissipation enables a faster operation as well as holds up Moore's law. The experimental results confirm that the proposed scheme offers high imperceptibility with a justified robustness.
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