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Flexible motion-adaptive video coding with redundant expansions

机译:具有冗余扩展功能的灵活的运动自适应视频编码

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This paper presents a highly flexible video coding scheme, based on the use of a redundant dictionary of spatio-temporal three-dimensional (3-D) functions. Directionality and anisotropic scaling are key ingredients to the spatial components, which form a rich collection of two-dimensional (2-D) visual primitives. The temporal component is tuned to capture most of the energy in the temporal signal evolution, along motion trajectories in the video sequence. The video coding scheme (MP3D) first computes motion trajectories that are eventually entropy coded and sent as side information to the decoder. It then applies a spatio-temporal decomposition along motion trajectories, using an adaptive approximation algorithm based on matching pursuit (MP). Quantized coefficients and basis function parameters are entropy-coded in a embedded stream that is constructed to respect multiple rate constraints. The geometric properties of the 2-D primitive dictionary allow for flexible spatial resolution adaptation, so that the flexible MP3D stream enables decoding at different spatio-temporal resolutions, and multiple rates. The MP3D scheme is shown to provide rate-distortion performance that are comparable with state-of-the-art schemes, such as H.264, MPEG-4, at low and medium bit rate. However, the use of a redundant dictionary is penalizing at high coding rate, which makes the MP3D algorithm mostly interesting for low rate applications, or as a flexible base layer in hierarchical coding schemes.
机译:本文基于时空三维(3-D)函数的冗余字典,提出了一种高度灵活的视频编码方案。方向性和各向异性缩放是空间成分的关键要素,这些空间成分构成了二维(2-D)视觉图元的丰富集合。沿视频序列中的运动轨迹,对时间分量进行了调整,以捕获时间信号演化中的大部分能量。视频编码方案(MP3D)首先计算运动轨迹,这些运动轨迹最终经过熵编码,并作为辅助信息发送到解码器。然后,它使用基于匹配追踪(MP)的自适应近似算法沿运动轨迹进行时空分解。量化系数和基函数参数在嵌入式流中被熵编码,该嵌入式流被构造为遵守多个速率约束。 2-D基本字典的几何属性允许灵活的空间分辨率适应,因此灵活的MP3D流能够以不同的时空分辨率和多种速率进行解码。示出了MP3D方案在低和中比特率下可以提供与H-264,MPEG-4等最新方案相当的速率失真性能。但是,使用冗余字典会以高编码速率带来不利影响,这使得MP3D算法对于低速率应用或在分层编码方案中作为灵活的基础层最为有趣。

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