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Novel multiple bypass bins scheme for low-power UHD video processing HEVC binary arithmetic encoder architecture

机译:用于低功率UHD视频处理的新型多重旁路箱方案HEVC二进制算术编码器体系结构

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The HEVC is one of the most recent video coding standards, developed in order to face upcoming challenges, due to higher video quality and resolution. One of the HEVC components is the entropy encoder, which consists only of the Context Adaptive Binary Arithmetic Coding (CABAC) algorithm. The CABAC algorithm imposes some severe difficulties in order to achieve increasing throughput, due to the high data dependency among each processing element. Along with throughput, low-power consumption is a sought-after goal for video processing hardware architecture. This work proposes a novel multiplier-less scheme for multiple bypass bins processing focusing in increasing bin per cycle throughput focusing in low-power design for CABAC critical submodule Binary Arithmetic Encoder (BAE), with negligible degradation in frequency. The present work also accomplishes the insertion of low-power techniques, based on the average proportion of bins for video test sequences. Results show that the proposed work is able to process 8K UHD videos at 6.2 high tier with the minimum frequency among the works in the literature, which decreases the power dissipation of the block. The average power savings achieved by the insertion of low-power technique were, on average, 14.26%.
机译:HEVC是最新的视频编码标准之一,由于更高的视频质量和分辨率而开发,以应对即将来临的挑战。 HEVC组件之一是熵编码器,它仅由上下文自适应二进制算术编码(CABAC)算法组成。由于每个处理元素之间的高度数据依赖性,为了实现更高的吞吐量,CABAC算法施加了一些严重的困难。除吞吐量外,低功耗也是视频处理硬件体系结构的追求目标。这项工作提出了一种新颖的无乘法器方案,用于多个旁路箱处理,着重于提高箱每个周期的吞吐量,重点放在针对CABAC关键子模块二进制算术编码器(BAE)的低功耗设计中,而频率的下降却可以忽略不计。当前的工作还基于视频测试序列的bin的平均比例,完成了低功耗技术的插入。结果表明,所提出的工作能够在文献中的工作中以最小的频率处理6.2高层的8K UHD视频,从而降低了模块的功耗。通过插入低功耗技术,平均节省的电量平均为14.26%。

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