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Spatial-domain edge-directed interpolation based de-interlacing to up-scaling technology for 1080i Full HD to Progressive 8K Ultra HD

机译:基于空间域边缘定向插值的去隔行技术到1080i Full HD到渐进式8K Ultra HD的放大技术

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In this paper, an effective edge-directed low-complex interpolation based method is proposed for 1080i Full HD to Progressive 8K Ultra HD video post-processing. The proposed spatial-domain post-processing technology is composed of two processing stages, where the first stage is the three-scan lines based de-interlacing process for 1080i Full HD to 1080p Full HD conversion, and the second stage is the de-interlacing based upscaling process for 1080p Full HD to 8K UHD conversion. First, the proposed pixel detector classifies the interlaced pixels into five modes, which tend to a smooth pixel, a vertical edge, a horizontal edge, a near horizontal edge, or an uncertain status. Then the corresponding de-interlacing methods are used to interpolate de-interlaced pixels for edge preservation. Second, the same de-interlacing scheme is applied to the upscaling process. Simulation results demonstrate that the proposed edge-directed interpolation scheme provides better subjective results than the previous spatial-domain based methods. Moreover, by paying the cost-effective complexities, the proposed method can also achieve the acceptable visually performance for the real-time de-interlacing and upscaling applications.
机译:本文提出了一种基于边缘定向的低复杂度插值的有效方法,用于1080i Full HD到渐进式8K Ultra HD视频的后处理。所提出的空间域后处理技术包括两个处理阶段,其中第一阶段是基于三扫描线的1080i Full HD到1080p Full HD转换的逐行扫描处理,第二阶段是逐行扫描基于1080p全高清到8K UHD转换的升级过程。首先,提出的像素检测器将隔行扫描的像素分为五个模式,这五个模式趋于平滑像素,垂直边缘,水平边缘,接近水平边缘或不确定状态。然后使用相应的去隔行方法对去隔行像素进行插值以保持边缘。其次,将相同的去隔行方案应用于放大过程。仿真结果表明,与基于空间域的方法相比,本文提出的边缘定向插值方案具有更好的主观效果。此外,通过支付具有成本效益的复杂性,所提出的方法还可以为实时去隔行和放大应用获得令人满意的视觉性能。

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