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首页> 外文期刊>International Scholarly Research Notices >Decoder-Side Motion Estimation Assuming Temporally or Spatially Constant Motion
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Decoder-Side Motion Estimation Assuming Temporally or Spatially Constant Motion

机译:解码器侧运动估计假设在时间上或空间恒定的运动

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摘要

In current video coding standards, the encoder exploits temporal redundancies within the video sequence by performing block-basedmotion compensated prediction. However, the motion estimation is only performed at the encoder, and the motion vectors have to be coded explicitly into the bit stream. Recent research has shown that the compression efficiency can be improved by also estimating the motion at the decoder. This paper gives a detailed description of a decoder-side motion estimation architecture which assumes temporal constant motion and compares the proposed motion compensation algorithm with an alternative interpolation method. The overall rate reduction for this approach is almost 8% compared to H.264/MPEG-4 Part 10 (AVC). Furthermore, an extensive comparison with the assumption ofspatial constant motion, as used in decoder-side motion vector derivation, is given. A new combined approach of both algorithms is proposed that leads to 13% bit rate reduction on average.
机译:在当前视频编码标准中,编码器通过执行基于块的序列的补偿预测来利用视频序列内的时间冗余。然而,运动估计仅在编码器处执行,并且必须将运动矢量明确地编码为位流。最近的研究表明,通过估计解码器的运动,可以提高压缩效率。本文给出了解码器侧运动估计架构的详细描述,该概率验证了时间常数运动,并将提出的运动补偿算法与替代插值方法进行比较。与H.264 / MPEG-4第10部分(AVC)相比,这种方法的总速率降低差不多。此外,给出了与解码器侧运动向量推导器中使用的空缺常量运动的假设进行了广泛的比较。提出了两种算法的新组合方法,导致平均降低了13%的比特率降低。

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