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H.264/AVC Motion Estimation on FPGAs and GPUs: A Comparative Study

机译:FPGA和GPU的H.264 / AVC运动估计:比较研究

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Video compression has been receiving much deserved attention due to the widespread adoption of digital video technology, and the need of optimizing the storage and transmission of such media. In this paper, we are concerned with the optimization of one step of the H.264 compression standard, namely, the motion estimation, in which motion vectors coding the movement of macroblocks (or sub-macroblocks) between two frames are computed. Specifically, we present here a comparative study between two architectures that were used to implement the full search (FS) algorithm for single pixel precision according to the standard H.264/AVC. We are particularly concerned with the relation area x throughput of the two architectures. We report here on experiments performed on CIF, SD and full HD data, comparing the maximum throughput achieved and bandwidth required by the architectures.
机译:由于数字视频技术的广泛采用,视频压缩已经受到了很大的关注,以及优化这种媒体的存储和传输的需要。在本文中,我们涉及优化H.264压缩标准的一个步骤,即运动估计,其中计算编码两个帧之间的宏块(或子宏块)的运动的运动矢量。具体而言,我们在这里介绍了两个架构之间的比较研究,该架构用于根据标准H.264 / AVC实现用于单像素精度的完整搜索(FS)算法。我们特别关注两种架构的关系区域X吞吐量。我们在此报告在CIF,SD和全高清数据上进行的实验,比较架构所需的最大吞吐量和架构的最大吞吐量。

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