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High-Throughput Binary Arithmetic Encoder using Multiple-Bypass Bins Processing for HEVC CABAC

机译:HEVC CABAC使用多旁路箱处理的高通量二进制算术编码器

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The advance of massive video processing applications, devices and resolutions has led to new challenges in video encoding. The HEVC (High Efficiency Video Coding) standard emerges as one alternative in order to address the new video processing requirements. The HEVC allows only one type of entropy encoding algorithm, which is the CABAC (Context-Adaptive Binary Arithmetic Coding). The compression gains achieved by CABAC algorithm come at the cost of increasing complexity for implementation, due to intense data dependencies. The BAE (Binary Arithmetic Encoder) is the CABAC critical sub-block, in which the main part of the algorithm is executed. The present work proposes an 8-stage pipeline BAE architectural solution, named MB-BAE, with the addition of multiple-bypass bins processing, in order to increase throughput without compromising the critical path of the architecture. As a result, an average of 4.94 bins/cycle and around 2.6-Gbin/s of throughput are achieved in our BAE. This is the highest throughput found among related works in the literature, and being able to process 8K UHD videos with the lowest frequency when compared to the same related works.
机译:大规模视频处理应用程序,设备和分辨率的进步带来了视频编码方面的新挑战。为了满足新的视频处理要求,HEVC(高效视频编码)标准作为一种替代方案出现了。 HEVC仅允许一种类型的熵编码算法,即CABAC(上下文自适应二进制算术编码)。由于强烈的数据依赖性,通过CABAC算法获得的压缩增益以实现的复杂性为代价。 BAE(二进制算术编码器)是CABAC关键子块,在其中执行算法的主要部分。本工作提出了一种称为MB-BAE的8级流水线BAE架构解决方案,其中增加了多路旁路箱处理功能,以便在不影响架构关键路径的情况下提高吞吐量。结果,在我们的BAE中平均实现了4.94个bin /周期和大约2.6-Gbin / s的吞吐量。这是文献中相关作品中发现的最高吞吐量,并且与相同的相关作品相比,能够以最低的频率处理8K UHD视频。

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