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Low-Power and High-Throughput Approximated Architecture for AV1 FME Interpolation

机译:AV1 FME插值的低功耗和高吞吐量近似架构

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Modern video encoders like the AOM Video 1 (AV1) implement several complex tools to allow the required high level of compression efficiency. The Fractional Motion Estimation (FME) is one of these tools and in AV1 the FME defines 90 different filters. To handle such complexity, hardware acceleration using approximate computing has become an alternative to be explored. This paper presents an approximate solution for the AV1 FME interpolation filters based on the approximation of the original filter coefficients intending to generate more hardware friendly coefficients. The approximated version was designed in hardware and can achieve real-time interpolation for UHD 8K videos at 30 frames per second, when synthesized using 40nm TSMC standard-cells technology. The designed architecture dissipates 26.79mW which represents more than 80% power reduction when compared to the original precise solution. The approximation implied in a small average coding efficiency degradation of 0.54% in BD-BR. When comparing with related works, this architecture reaches an expressive power reduction (2.1 to 4.8 times) even supporting more complex tools.
机译:现代视频编码器如AOM视频1(AV1)实现了多种复杂的工具,以允许所需的高水平压缩效率。分数运动估计(FME)是这些工具之一,并且在AV1中,FME定义了90个不同的滤波器。为了处理这种复杂性,使用近似计算的硬件加速已成为待探索的替代方案。本文介绍了AV1 FME插值滤波器的近似解,这是基于打算产生更多硬件友好系数的原始滤波器系数的近似。近似版本设计在硬件中,可以在使用40nm TSMC标准单元技术合成时为每秒30帧实现UHD 8K视频的实时插值。设计的体系结构消散了26.79mW,与原始精确解决方案相比,该功耗超过80%。在BD-BR中的小平均编码效率降低0.54%的近似暗示。与相关工作进行比较时,这种架构甚至达到了表现力的功率降低(2.1到4.8次),即使支持更复杂的工具也是如此。

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