VLSI Architecture for Spread Spectrum Image Watermarking in Walsh-Hadamard Transform Domain Using Binary Watermark

S. Ghosh, S. Talapatra, S. Chakraborty, N. Chatterjee, H. Rahaman, S. Maity
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引用次数: 4

Abstract

Spread-spectrum communication encompasses a number of signalling techniques in which the transmitted bandwidth is significantly larger than required by the data rate and the transmitted bandwidth is determined by a function independent of the message that is known to both sender and receiver. Originally intended to increase resistance to jamming and lowering the probability of interception, its properties are also desirable in a number of other applications and have been applied to the problem of digital watermarking. In this paper we have a transform domain Spread Spectrum (SS) watermarking scheme which effectively eliminates security problem while increasing robustness and enhancing perceptual quality of watermarked image. VLSI implementation using Field Programmable Gate Array (FPGA) has been developed for the proposed watermarking algorithm which becomes a solution for real-time implementation.
基于二进制水印的Walsh-Hadamard变换域扩频图像水印的VLSI架构
扩频通信包括许多信号技术,其中传输带宽明显大于数据速率所需的带宽,并且传输带宽由发送方和接收方都知道的独立于消息的函数决定。最初的目的是增加抗干扰性和降低拦截概率,其特性在许多其他应用中也很理想,并已应用于数字水印问题。本文提出了一种变换域扩频(SS)水印方案,该方案在提高图像鲁棒性和感知质量的同时,有效地消除了水印的安全性问题。采用现场可编程门阵列(FPGA)对所提出的水印算法进行了VLSI实现,成为实时实现的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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