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首页> 外文期刊>Journal of signal processing systems for signal, image, and video technology >Optimizing the H.264/AVC Video Encoder Application Structure for Reconfigurable and Application-Specific Platforms
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Optimizing the H.264/AVC Video Encoder Application Structure for Reconfigurable and Application-Specific Platforms

机译:针对可重配置和特定于应用的平台优化H.264 / AVC视频编码器应用结构

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摘要

The H.264/AVC video coding standard features diverse computational hot spots that need to be accelerated to cope with the significantly increased complexity compared to previous standards. In this paper, we propose an optimized application structure (i.e. the arrangement of functional components of an application determining the data flow properties) for the H.264 encoder which is suitable for application-specific and reconfigurable hardware platforms. Our proposed application structural optimization for the computational reduction of the Motion Compensated Interpolation is independent of the actual hardware platform that is used for execution. For a MIPS processor we achieve an average speedup of approximately 60× for Motion Compensated Interpolation. Our proposed application structure reduces the overhead for Reconfigurable Platforms by distributing the actual hardware requirements amongst thernfunctional blocks. This increases the amount of available reconfigurable hardware per Special Instruction (within a functional block) which leads to a 2.84× performance improvement of the complete encoder when compared to a Benchmark Application with standard optimizations. We evaluate our application structure by means of four different hardware platforms.
机译:H.264 / AVC视频编码标准具有多种计算热点,与以前的标准相比,这些热点需要加速以应对显着增加的复杂性。在本文中,我们为H.264编码器提出了一种优化的应用程序结构(即确定数据流属性的应用程序功能组件的排列),适用于特定于应用程序和可重新配置的硬件平台。我们为运动补偿插值的计算减少而提出的应用程序结构优化与用于执行的实际硬件平台无关。对于MIPS处理器,运动补偿插值的平均速度提高了约60倍。通过在功能块之间分配实际的硬件需求,我们提出的应用程序结构减少了可重配置平台的开销。与具有标准优化功能的基准应用程序相比,这会增加每个特殊指令(在功能块内)可用的可重新配置硬件的数量,从而使完整编码器的性能提高2.84倍。我们通过四个不同的硬件平台评估我们的应用程序结构。

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