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A high throughput CABAC algorithm using syntax element partitioning

机译:使用语法元素划分的高吞吐量CABAC算法

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Enabling parallel processing is becoming increasingly necessary for video decoding as performance requirements continue to rise due to growing resolution and frame rate demands. It is important to address known bottlenecks in the video decoder such as entropy decoding, specifically the highly serial Context-based Adaptive Binary Arithmetic Coding (CABAC) algorithm. Concurrency must be enabled with minimal cost to coding efficiency, power, area and delay. This work proposes a new CABAC algorithm for the next generation standard in which binary symbols are grouped by syntax elements and assigned to different partitions which can be decoded in parallel. Furthermore, since the distribution of binary symbols changes with quantization, an adaptive binary symbol allocation scheme is proposed to maximize throughput. Application of this next generation CABAC algorithm on five 720p sequences shows a throughput increase of up to 3x can be achieved with negligible impact on coding efficiency (0.06% to 0.37%), which is a 2 to 4x reduction in coding penalty compared with H.264/AVC and entropy slices. Area cost is also reduced by 2x. This increased throughput can be traded-off for low power consumption in mobile applications.
机译:随着分辨率和帧速率需求的增长,对性能的要求不断提高,启用并行处理对于视频解码变得越来越必要。重要的是解决视频解码器中的已知瓶颈,例如熵解码,尤其是高度串行的基于上下文的自适应二进制算术编码(CABAC)算法。必须以最小的编码效率,功耗,面积和延迟成本来启用并发。这项工作为下一代标准提出了一种新的CABAC算法,其中二进制符号由语法元素分组并分配给可以并行解码的不同分区。此外,由于二进制符号的分布随着量化而改变,因此提出了一种自适应二进制符号分配方案以最大化吞吐量。该下一代CABAC算法在五个720p序列上的应用表明,吞吐量提高了3倍,而对编码效率的影响可忽略不计(0.06%至0.37%),与H相比,编码损失减少了2至4倍。 264 / AVC和熵片。面积成本也降低了2倍。可以权衡增加的吞吐量,以降低移动应用中的功耗。

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