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Joint Chroma Subsampling and Distortion-Minimization-Based Luma Modification for RGB Color Images With Application

机译:基于联合色度二次采样和基于失真最小化的亮度修正的RGB彩色图像及其应用

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摘要

In this paper, we propose a novel and effective hybrid method, which joins the conventional chroma subsampling and the distortion-minimization-based luma modification together, to improve the quality of the reconstructed RGB full-color image. Assume the input RGB full-color image has been transformed to a YUV image, prior to compression. For each 2×2 UV block, one 4:2:0 subsampling is applied to determine the one subsampled U and V components, Us and Vs . Based on Us , Vs , and the corresponding 2×2 original RGB block, a main theorem is provided to determine the ideally modified 2×2 luma block in constant time such that the color peak signal-to-noise ratio (CPSNR) quality distortion between the original 2×2 RGB block and the reconstructed 2×2 RGB block can be minimized in a globally optimal sense. Furthermore, the proposed hybrid method and the delivered theorem are adjusted to tackle the digital time delay integration images and the Bayer mosaic images whose Bayer CFA structure has been widely used in modern commercial digital cameras. Based on the IMAX, Kodak, and screen content test image sets, the experimental results demonstrate that in high efficiency video coding, the proposed hybrid method has substantial quality improvement, in terms of the CPSNR quality, visual effect, CPSNR-bitrate trade-off, and Bjøntegaard delta PSNR performance, of the reconstructed RGB images when compared with existing chroma subsampling schemes.
机译:在本文中,我们提出了一种新颖有效的混合方法,将传统的色度子采样和基于失真最小化的亮度修改结合在一起,以提高重建的RGB全彩色图像的质量。假设在压缩之前将输入的RGB全彩色图像转换为YUV图像。对于每个2×2 UV块,应用一个4:2:0子采样以确定一个子采样的U和V分量Us和Vs。基于Us,Vs和相应的2×2原始RGB块,提供了一个主定理,用于确定恒定时间的理想修改的2×2亮度块,以使色峰信噪比(CPSNR)质量失真可以在全局最佳意义上最小化原始2×2 RGB块和重构的2×2 RGB块之间的距离。此外,对提出的混合方法和传递定理进行了调整,以解决数字时延积分图像和Bayer CFA结构已广泛用于现代商用数码相机的Bayer马赛克图像。实验结果表明,基于IMAX,柯达和屏幕内容测试图像集,在高效率视频编码中,该混合方法在CPSNR质量,视觉效果,CPSNR比特率折衷方面均具有实质性的改进。与现有色度子采样方案相比,重建的RGB图像具有Bjøntegaarddelta PSNR性能。

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