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首页> 外文期刊>Signal Processing. Image Communication: A Publication of the the European Association for Signal Processing >High performance fractional motion estimation in h.264/avc based on one-step algorithm and 8×4 element block processing
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High performance fractional motion estimation in h.264/avc based on one-step algorithm and 8×4 element block processing

机译:基于一步算法和8×4元素块处理的h.264 / avc中的高性能分数运动估计

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摘要

Conventional two-step algorithm, long latency of interpolation and various motion vectors are three factors that mainly induce high computation complexity of fractional motion estimation and also prevent it from encoding high-definition video. In order to overcome these obstacles, a high performance fractional motion engine is proposed in this paper with three techniques. First, based on high correlation between motion vector of a block and its up-layer as well as relationship of integer candidates, one-step algorithm is proposed. Second, an 8×4 element block processing is adopted, which not only eliminates almost redundancies in interpolation, but also still ensures hardware reusability. Finally, a scheme of processing 4×4 and 4×8 block with free of cycles is presented, so that the number of motion vectors can be reduced up to 59%. Experimental results show that the proposed design just needs 50% of gate count and 56% of cycles when compared with previous design while nearly maintaining the coding performance.
机译:常规的两步算法,较长的插值等待时间和各种运动矢量是三个因素,这些因素主要引起分数运动估计的高计算复杂性,并阻止其对高清视频进行编码。为了克服这些障碍,本文提出了一种采用三种技术的高性能分数运动引擎。首先,基于块的运动矢量与其上层之间的高度相关性以及整数候选关系,提出了一种单步算法。其次,采用8×4元素块处理,不仅消除了插值的几乎冗余,而且还确保了硬件的可重用性。最后,提出了一种无周期处理4×4和4×8块的方案,从而可以将运动矢量的数量减少多达59%。实验结果表明,与以前的设计相比,提出的设计仅需要50%的门计数和56%的周期,而几乎保持了编码性能。

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