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首页> 外文期刊>Signal Processing. Image Communication: A Publication of the the European Association for Signal Processing >Hybrid motion estimation scheme for secondary SP-frame coding using inter-frame correlation and FMO
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Hybrid motion estimation scheme for secondary SP-frame coding using inter-frame correlation and FMO

机译:使用帧间相关和FMO的辅助SP帧编码的混合运动估计方案

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摘要

To cope with considerable size of secondary SP-frames, quantized-transform domain motion estimation has recently been proved to be appropriate for the coding of secondary SP-frames in H.264/AVC. Nevertheless, its computational complexity is tremendous and there are still some situations that pixel-domain motion estimation can perform better. Both techniques are therefore not implemented solely in secondary SP-frame coding. In this paper, a hybrid scheme is proposed to effectively combine two existing motion estimation techniques. The combination is based on a new measurement of inter-frame correlation using the bit-counts of the macroblocks in SP-frames, so that the hybrid scheme is dominated by employing quantized-transform domain motion estimation in the macroblocks with weaker inter-frame correlation; otherwise, it approaches to pixel-domain motion estimation. With the further help of the explicit mode in Flexible Macroblock Ordering (FMO), the proposed hybrid scheme classifies MBs into two slice groups by examining the domain used in motion estimation prior to coding motion vectors in a secondary SP-frame. The slice structure of a secondary SP-frame using the explicit FMO mode is flexible and can be changed during the encoding of each new frame. Simulation results show that our proposed scheme overwhelmingly outperforms the quantized-transform domain motion estimation scheme. As a consequence, the size of secondary SP-frames can be reduced remarkably with significant computational reduction.
机译:为了应付大量的次级SP帧,最近已证明量化变换域运动估计适用于H.264 / AVC中的次级SP帧的编码。然而,其计算复杂度巨大,并且在某些情况下像素域运动估计可以执行得更好。因此,这两种技术并非仅在辅助SP帧编码中实现。在本文中,提出了一种混合方案以有效地结合两种现有的运动估计技术。该组合基于使用SP帧中宏块的比特数对帧间相关性进行的新测量,从而通过在帧间相关性较弱的宏块中采用量化变换域运动估计来控制混合方案;否则,它接近于像素域运动估计。借助灵活宏块排序(FMO)中显式模式的进一步帮助,所提出的混合方案通过在对辅助SP帧中的运动矢量进行编码之前检查运动估计中使用的域,将MB分为两个切片组。使用显式FMO模式的辅助SP帧的切片结构非常灵活,可以在每个新帧的编码过程中进行更改。仿真结果表明,我们提出的方案绝对优于量化变换域运动估计方案。结果,可以显着地减少次级SP帧的大小,并显着减少计算量。

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