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A HARDWARE-EFFICIENT BLOCK MATCHING UNIT FOR H.265/HEVC MOTION ESTIMATION ENGINE USING BIT-SHRINKING

机译:使用位缩小的H.265 / HEVC运动估计引擎的硬件高效的块匹配单元

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摘要

The main objective of this work is to enhance the processing performance of the recently introduced video codec H. 265/HEVC. Since most of the computations of H. 265/HEVC still occur in the motion estimation engine which is inherited from its predecessor H.264/AVC, we propose a bit-shrinking approach with a modified logic functionality to design an efficient and simplified block matching unit that replaces the already used Sum of Absolute Differences (SAD) unit. The hardware complexity of the proposed unit itself is reduced and the number of its generated output bits are reduced as well which in turn simplifies all the subsequent units of motion estimation. The hardware complexity, the consumed power and the processing delay of the motion estimation engine are therefore reduced significantly with only marginal deterioration in both the bit-rate and the peak-signal-to-noise-ratios (PSNR) of the tested High Definition (HD) and Ultra-high Definition (UHD) H.265/HEVC compressed videos. We simulate our design using HM16.6 and perform system logic synthesis using Synopsys’s Design Compiler, targeting ASIC, for evaluation purposes.
机译:这项工作的主要目标是提高最近介绍的视频编解码器H. 265 / HEVC的处理表现。由于H. 265 / HEVC的大多数计算仍然发生在从其前任H.264 / AVC继承的运动估计引擎中,我们提出了一种具有修改的逻辑功能来设计有效和简化的块匹配的比特缩小方法替换已使用的绝对差别(SAD)单元的已使用和的单元。所提出的单元本身的硬件复杂性降低,并且其产生的输出比特的数量也减小,这反过来又简化了所有后续运动估计单元。因此,运动估计引擎的硬件复杂性,消耗的功率和处理延迟显着减少了测试高清的比特率和峰值信噪比(PSNR)的边际劣化( HD)和超高清(UHD)H.265 / HEVC压缩视频。我们使用HM16.6模拟我们的设计,并使用Synopsys的设计编译器进行系统逻辑合成,针对ASIC,以进行评估。

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