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Novel Chroma Subsampling Strategy Based on Mathematical Optimization for Compressing Mosaic Videos With Arbitrary RGB Color Filter Arrays in H.264/AVC and HEVC

机译:基于数学优化的色度二次采样策略,用于在H.264 / AVC和HEVC中使用任意RGB彩色滤光片阵列压缩马赛克视频

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To save manufacturing cost, most color digital video cameras employ a single-sensor technology with a red-green- blue (RGB) color filter array (CFA) to capture real-world scenes. Due to only one primary color measured at each pixel location, the captured videos are usually referred to as the mosaic videos. For the purposes of economical storage and transmission, it is very important to achieve a good tradeoff between the quality and bitrate when compressing mosaic videos with different RGB-CFA structures. In this paper, based on mathematical optimization technique, a novel chroma subsampling strategy is presented for compressing mosaic videos with arbitrary RGB-CFA structures in H.264/AVC and High Efficiency Video Coding (HEVC). For each 2 × 2 YUV block to be subsampled with 4:2:0 format, the proposed strategy determines the proper sampled U and V components by minimizing, prior to compression, the quality distortion between the original colocated mosaic block and the mosaic block conversed from the current subsampled YUV block. Through the mathematical optimization formulated in the proposed strategy, the significance of the sampled U and V components for reconstructing R, G, and B pixels can be simultaneously taken into consideration. The experimental results demonstrate that the proposed chroma subsampling strategy has the best quality and bitrate tradeoff at a similar execution time requirement for compressing mosaic videos with arbitrary RGB-CFA structures in H.264/AVC and HEVC compared with the state-of-the-art ones by Chen et al. and Yang et al. as well as the three commonly used ones.
机译:为了节省制造成本,大多数彩色数码摄像机都采用了具有红绿蓝(RGB)滤色镜阵列(CFA)的单传感器技术来捕获现实场景。由于在每个像素位置仅测量一种原色,因此捕获的视频通常称为镶嵌视频。为了经济地存储和传输,在压缩具有不同RGB-CFA结构的镶嵌视频时,在质量和比特率之间取得良好的折衷非常重要。本文基于数学优化技术,提出了一种新的色度二次采样策略,用于在H.264 / AVC和高效视频编码(HEVC)中压缩具有任意RGB-CFA结构的马赛克视频。对于要以4:2:0格式进行二次采样的每个2×2 YUV块,所提出的策略通过在压缩之前最小化原始共置镶嵌块和转换的镶嵌块之间的质量失真来确定适当的采样U和V分量。从当前的子采样YUV块中。通过在提出的策略中制定的数学优化,可以同时考虑采样的U和V分量对于重建R,G和B像素的重要性。实验结果表明,与目前的状态相比,在H.264 / AVC和HEVC中压缩具有任意RGB-CFA结构的镶嵌视频时,在相似的执行时间要求下,所提出的色度二次采样策略具有最佳的质量和比特率权衡。陈等人的艺术作品。和杨等。以及三种常用的

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