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Adjusted 4:2:2 chroma subsampling strategy for compressing mosaic videos with arbitrary RGB color filter arrays in HEVC

机译:调整后的4:2:2色度二次采样策略,用于在HEVC中使用任意RGB彩色滤镜阵列压缩马赛克视频

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To reduce the cost, most of surveillance cameras and web cameras are equipped with a single sensor covered by a red-green-blue (RGB) color filter array (CFA) for capturing only one RGB color component per pixel and hence produce so-called mosaic images. Conventionally, such cameras perform demosaicking, the transform from RGB domain to YUV domain, the chroma subsampling with 4:2:2 format, and the video coding to compress the captured mosaic images for storage saving and transmission over the Internet. However, in the conventional compression scheme, the commonly used 4:2:2 chroma subsampling strategies always sample U and V components from the fixed positions without considering the significance of the sampled U and V components for reconstructing R, G and B pixels, which results in the quality degradation of the reconstructed videos. In this paper, to remedy this weakness, we propose an adjusted 4:2:2 chroma subsampling strategy for compressing mosaic videos with arbitrary RGB-CFA structures in HEVC. The novelty of our work lies on that the positions of the sampled U and V components are dynamically adjusted according to the ordered significance of the U component for reconstructing B and G pixels as well as the V component for reconstructing R and G pixels. Experimental results demonstrate that the proposed adjusted 4:2:2 chroma subsampling strategy outperforms, in terms of the quality of the reconstructed mosaic videos and the reconstructed full-color videos, the commonly used ones in the cases of middle and high bitrate and is competitive with the commonly used ones in the case of low bitrate.
机译:为了降低成本,大多数监控摄像机和网络摄像机都配备了一个由红绿蓝(RGB)滤色镜阵列(CFA)覆盖的传感器,用于每个像素仅捕获一个RGB颜色分量,因此产生所谓的马赛克图像。传统上,此类摄像机执行去马赛克,从RGB域到YUV域的转换,具有4:2:2格式的色度子采样以及视频编码以压缩捕获的镶嵌图像,以节省存储并通过Internet传输。然而,在常规压缩方案中,通常使用的4:2:2色度子采样策略总是从固定位置采样U和V分量,而不考虑采样的U和V分量对于重构R,G和B像素的重要性,这导致重建视频的质量下降。在本文中,为了弥补这一缺陷,我们提出了一种经过调整的4:2:2色度子采样策略,用于在HEVC中压缩具有任意RGB-CFA结构的镶嵌视频。我们工作的新颖性在于,根据用于重建B和G像素的U分量以及用于重建R和G像素的V分量的有序重要性来动态调整采样的U和V分量的位置。实验结果表明,在重建的镶嵌视频和重建的全彩色视频的质量方面,所提出的调整后的4:2:2色度二次采样策略优于传统的中,高比特率视频,并且具有竞争力。与低比特率的情况下的常用方法。

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