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A modified RCM for reversible watermarking with FPGA implementation

机译:用于FPGA实现的可逆水印修改RCM

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Reversible contrast mapping (RCM) is used in reversible watermarking (RW) for images as a simple integer transform applied on pair of pixels and their least significant bits (LSB) are used for data embedding. This paper first proposes some modifications on existing RCM technique for further performance improvement in terms of embedding rate and visual distortion. This is then followed by a hardware architecture implementation in field programmable gate array (FPGA) platform. For a cover image of size (32×32) and a watermark of 512 bit length, the proposed architecture consumes 7463 slices, 8344 slice flip-flop, 6592, 4-input LUTs and 5 BRAMs for watermark embedding at maximum clock frequency of 67.98 MHz.
机译:可逆对比度映射(RCM)用于可逆水印(RW),用于图像,作为应用于一对像素的简单整数变换,其最低有效位(LSB)用于数据嵌入。 本文首先提出了对现有RCM技术的一些修改,以便在嵌入率和视觉失真方面进行进一步的性能。 然后,这是在现场可编程门阵列(FPGA)平台中的硬件架构实现。 对于大小的盖子图像(32× 32)和512位长度的水印,所提出的架构消耗了7463个切片,8344片触发器,6592,4输入LUT和5个用于在最大时钟频率的水印嵌入的5块栏 67.98 MHz。

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