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Residual Syntax Elements Analysis and Design Targeting High-Throughput HEVC CABAC

机译:残留语法元素分析和设计瞄准高吞吐量HEVC CABAC

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Video processing is a topic of major interest due to the demand for real-time delivery of increasing resolution videos. Moreover, Internet traffic related to high-quality video processing tends to be the dominant type of information transmitted. The high-efficiency video coding (HEVC) standard is a suitable and efficient choice to overcome the challenges regarding the matter presented. In HEVC, the final encoding step is the entropy encoding, in which the context-adaptive binary arithmetic coding (CABAC) algorithm is the sole option used. Many recent research efforts have been successful in enhancing CABAC throughput for a hardware approach, which is a remarkable difficulty due to the intrinsic dependencies generated by the algorithm. The throughput improvement happens due to the capability of these entropy-encoding designs to consume multiple input data coming from the previous encoding steps. Nevertheless, the same care in terms of data generation shall occur for the stage right before the CABAC block. Otherwise, a transfer of the potential processing bottleneck would move to the input data fabrication. Therefore, this paper proposes a novel scheme, named multi residual syntax element treatment (MRSET), to be compliant with these recent high-throughput CABAC designs, being able to supply the entropy coding with enough input data and thus it would not starve. A complete analysis involving HEVC reference software and recommend video sequences occurred to drive MRSET inception. Different multi-core MRSET hardware architectures results are provided, and the best suitable option is defined based on the characteristics of the state-of-the-art CABAC architectures.
机译:由于对越来越多的分辨率视频实时交付的需求,视频处理是一个主要兴趣的主题。此外,与高质量视频处理相关的互联网流量往往是传输的主要信息类型。高效视频编码(HEVC)标准是一个适合且有效的选择,以克服有关所呈现的问题的挑战。在HEVC中,最终编码步骤是熵编码,其中上下文自适应二进制算术编码(CABAC)算法是所用的唯一选择。许多最近的研究努力取得了成功增强了硬件方法的Cabac吞吐量,这是由于算法产生的内在依赖性,这是一种显着困难。由于这些熵编码设计的能力消耗来自前一个编码步骤的多个输入数据的功能,因此发生了吞吐量改进。尽管如此,在CABAC块之前的阶段,应在数据生成方面的相同关怀。否则,电位处理瓶颈的传送将移动到输入数据制造。因此,本文提出了一种新颖的方案,命名为多剩余语法元素治疗(MRSet),符合这些最近的高吞吐量CABAC设计,能够提供足够的输入数据的熵编码,因此不会达到。涉及HEVC参考软件的完整分析并推荐用于驱动MRSET裁切的视频序列。提供了不同的多核MRSET硬件架构结果,并基于最先进的CABAC架构的特征来定义最佳合适的选项。

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