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Adaptive Progressive Motion Vector Resolution Selection Based on Rate–Distortion Optimization

机译:基于速率失真优化的自适应渐进运动矢量分辨率选择

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摘要

In the state-of-the-art H.265/HEVC video coding standard, the motion vector (MV) resolution is fixed to be 1/4-pel for the entire video sequence, while the inherent video characteristics, e.g., texture complexities and motion activities, have been largely ignored. Obviously such strategy may not suffice the demand of high-accuracy motion compensation. In this paper, we propose a specially designed rate–distortion model in terms of the MV resolution by taking the video characteristics into consideration. In particular, the MV resolution selection is formulated as a rate–distortion optimization problem by analyzing the rate-distortion cost of each MV resolution candidate. To further improve the coding performance, the progressive MV resolution strategy is employed, where the optimal progressive MV resolution is determined by decision trees constructed with the rate–distortion model. In this manner, a novel adaptive progressive motion vector resolution selection scheme can be realized and the MV resolution can be adaptively adjusted based on the properties of local content. Extensive experiments and comparisons show that the proposed algorithm significantly improves the coding performance, and 1.8% BD-rate gain on average has been achieved without introducing any noticeable computational complexity.
机译:在最新的H.265 / HEVC视频编码标准中,整个视频序列的运动矢量(MV)分辨率固定为1/4像素,而固有的视频特性(例如纹理复杂度)和运动活动在很大程度上被忽略了。显然,这种策略可能无法满足高精度运动补偿的需求。在本文中,我们通过考虑视频特性,提出了一种针对MV分辨率而设计的速率失真模型。特别是,通过分析每个MV分辨率候选者的速率失真成本,将MV分辨率选择公式化为速率失真优化问题。为了进一步提高编码性能,采用了渐进式MV分辨率策略,其中最优的渐进式MV分辨率由使用速率失真模型构造的决策树确定。以这种方式,可以实现新颖的自适应渐进运动矢量分辨率选择方案,并且可以基于本地内容的属性来自适应地调整MV分辨率。大量的实验和比较表明,该算法显着提高了编码性能,并且在不引入任何明显的计算复杂度的情况下,平均获得了1.8%的BD速率增益。

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