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Dyadic spatial resolution reduction transcoding for H.264/AVC

机译:H.264 / aVC的二元空间分辨率降低转码

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摘要

In this paper, we examine spatial resolution downscaling transcoding for H.264/AVC video coding. A number of advanced coding tools limit the applicability of techniques, which were developed for previous video coding standards. We present a spatial resolution reduction transcoding architecture for H.264/AVC, which extends open-loop transcoding with a low-complexity compensation technique in the reduced-resolution domain. The proposed architecture tackles the problems in H.264/AVC and avoids visual artifacts in the transcoded sequence, while keeping complexity significantly lower than more traditional cascaded decoder-encoder architectures. The refinement step of the proposed architecture can be used to further improve rate-distortion performance, at the cost of additional complexity. In this way, a dynamic-complexity transcoder is rendered possible. We present a thorough investigation of the problems related to motion and residual data mapping, leading to a transcoding solution resulting in fully compliant reduced-size H.264/AVC bitstreams.
机译:在本文中,我们研究了H.264 / AVC视频编码的空间分辨率降码转码。许多高级编码工具限制了为以前的视频编码标准开发的技术的适用性。我们提出了一种用于H.264 / AVC的空间分辨率降低代码转换架构,该架构在降低分辨率的域中扩展了具有低复杂度补偿技术的开环代码转换。所提出的体系结构解决了H.264 / AVC中的问题,并避免了转码序列中的视觉伪像,同时使复杂度大大低于传统的级联解码器/编码器体系结构。所提出的体系结构的细化步骤可以用来进一步提高速率失真性能,但代价是额外的复杂性。以这种方式,使得动态复杂的代码转换器成为可能。我们对与运动和残差数据映射有关的问题进行了深入研究,从而提出了一种转码解决方案,从而实现了完全符合要求的尺寸缩小的H.264 / AVC位流。

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