Improved parabolic prediction-based fractional search for H.264/AVC video coding

Yashen Lin, Yi Chun Wang
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引用次数: 11

Abstract

In this study, the authors propose an efficient fractional pixel search algorithm for H.264/AVC video coding to reduce the computational complexity in half/quarter-pixel motion estimation. A prediction for the optimal motion vector is derived under the assumption that the sum of absolute transform differences error surface is a symmetric parabolic function. With the optimal region, a decision rule for half-pixel search is proposed. The experimental result shows that approximately two search points are required. Based on the half-pixel search, a hierarchical quarter-pixel search is described and an extra three search points, on average, are consumed for each quarter-pixel search. Experimental results show that significant reduction in computation can be achieved, while maintaining high coding efficiency.
改进的基于抛物预测的H.264/AVC视频编码分数搜索
在本研究中,作者提出了一种高效的分数像素搜索算法,用于H.264/AVC视频编码,以降低半/四分之一像素运动估计的计算复杂度。假设绝对变换差误差面和为对称抛物线函数,推导出最优运动矢量的预测。利用最优区域,提出了半像素搜索的决策规则。实验结果表明,大约需要两个搜索点。在半像素搜索的基础上,描述了一种分层的四分之一像素搜索,平均每个四分之一像素搜索多消耗3个搜索点。实验结果表明,该方法在保持较高编码效率的同时,大大减少了计算量。
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