块匹配运动估计的算法和VLSI实现

M. Liou
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引用次数: 1

摘要

运动估计是视频编码算法中计算量最大的部分。它可能会消耗视频编解码器总处理能力的75%。虽然各种国际视频编码标准都采用了块匹配的方法进行运动估计,但设计者仍然可以自由选择特定的技术来寻找运动向量。因此,从完全搜索到简单快速搜索算法的许多技术已经被提出,其中一些已经在VLSI芯片中实现。应该强调的是,一个有效的运动估计算法的最重要的要求之一是它的实时执行能力。然而,选择特定的算法来实现在很大程度上取决于预期的应用程序,以及期望的性能和可承受的复杂性之间的权衡。在本文中,我们首先讨论了有效的块匹配运动估计的基本要素,然后简要描述了当前技术的现状,最后提出了这一重要研究领域的一些新活动。
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Algorithms and VLSI implementation for block-matching motion estimation
Motion estimation is the most computationally intensive component of a video coding algorithm. It could consume as much as 75% of the total processing power of a video codec. Although various international video coding standards have adopted the block-matching approach for motion estimation, a designer can still have the freedom to choose a specific technique to find the motion vectors. Consequently, numerous techniques ranging from full search to simple fast search algorithms have been proposed and some of them have been implemented in VLSI chips. It should be emphasized that one of the most important requirements for an effective motion estimation algorithm is its ability to perform in real-time. The choice of a specific algorithm for implementation, however, depends very much on the intended application as well as the trade-offs between the desired performance and affordable complexity. In this paper, we first discuss what are the essential ingredients for an effective block-matching motion estimation, then briefly, describe what is the status of current technology, and finally, present some new activities in this vital area of research.
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