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A Framework of Reversible Color-to-Grayscale Conversion With Watermarking Feature

机译:具有水印功能的可逆颜色至灰度转换的框架

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Reversible color-to-grayscale conversion (RCGC) is a method that embeds the chromatic information of a full color image into its grayscale version such that the original color image can be reconstructed in the future when necessary. In practical applications, it is required to provide a means to authenticate an information-embedded image such that its integrity can be guaranteed. However, none of the current RCGC algorithms take this factor into account. In this paper, to address this issue, we develop an information-embedding framework based on a vector quantization-based (VQ-based) RCGC algorithm recently proposed by us. Under this framework, we propose a RCGC algorithm that can embed both chromatic information and fragile watermark simultaneously into a grayscale image with the same technique to reduce the complexity and improve the efficiency. Like other VQ-based RCGC algorithms, the performance of the proposed RCGC algorithm highly relies on the palette it uses. We also propose a palette generation algorithm in this paper to support the information embedding process such that the visual quality of the color-embedded grayscale images and the reconstructed color images can be significantly improved.
机译:可逆颜色到灰度转换(RCGC)是一种方法,该方法将全彩色图像的色彩信息嵌入到其灰度版本中,使得在必要时可以将未来重建原始彩色图像。在实际应用中,需要提供验证信息嵌入式图像的手段,使得其完整性可以得到保证。但是,目前的RCGC算法都没有考虑到这一因素。在本文中,为了解决这个问题,我们开发了基于我们最近提出的基于矢量量化的(基于VQ的)RCGC算法的信息嵌入框架。在此框架下,我们提出了一种RCGC算法,可以使用相同的技术将晶体信息和脆弱的水印嵌入到灰度图像中,以降低复杂性并提高效率。与其他基于VQ的RCGC算法一样,所提出的RCGC算法的性能高度依赖于它使用的调色板。我们还提出了一种在本文中提出了一种调色板生成算法,以支持信息嵌入过程,使得可以显着提高彩色嵌入灰度图像的视觉质量和重建的彩色图像。

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