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Parallel tools in HEVC for high-throughput processing

机译:HEVC中用于高通量处理的并行工具

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HEVC (High Efficiency Video Coding) is the next-generation video coding standard being jointly developed by theITU-T VCEG and ISO/IEC MPEG JCT-VC team. In addition to the high coding efficiency, which is expected to provide50% more bit-rate reduction when compared to H.264/AVC, HEVC has built-in parallel processing tools to address bitrate, pixel-rate and motion estimation (ME) throughput requirements. This paper describes how CABAC, which is also used in H.264/AVC, has been redesigned for improved throughput, and how parallel merge/skip and tiles, which are new tools introduced for HEVC, enable high-throughput processing. CABAC has data dependencies which make it difficult to parallelize and thus limit its throughput. The prediction error/residual, represented as quantized transform coefficients, accounts for the majority of the CABAC workload. Various improvements have been made to the context selection and scans in transform coefficient coding that enable CABAC in HEVC to potentially achieve higher throughput and increased coding gains relative to H.264/AVC. The merge/skip mode is a coding efficiency enhancement tool in HEVC; the parallel merge/skip breaks dependency between the regular and merge/skip ME, which provides flexibility for high throughput and high efficiency HEVC encoder designs. For ultra high definition (UHD) video, such as 4kx2k and 8kx4k resolutions, low-latency and real-time processing may be beyond the capability of a single core codec. Tiles are an effective tool which enables pixel-rate balancing among the cores to achieve parallel processing with a throughput scalable implementation of multi-core UHD video codec. With the evenly divided tiles, a multi-core video codec can be realized by simply replicating single core codec and adding a tile boundary processing core on top of that. These tools illustrate that accounting for implementation cost when designing video coding algorithms can enable higher processing speed and reduce implementation cost, while still delivering high coding efficiency in the next generation video coding standard.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:HEVC(高效视频编码)是由ITU-T VCEG和ISO / IEC MPEG JCT-VC团队共同开发的下一代视频编码标准。除了高编码效率(与H.264 / AVC相比有望将比特率降低50%之外)之外,HEVC还具有内置的并行处理工具来解决比特率,像素速率和运动估计(ME)吞吐量要求。本文介绍了如何重新设计H.264 / AVC中使用的CABAC,以提高吞吐量,以及并行合并/跳过和切片(这是HEVC引入的新工具)如何实现高吞吐量处理。 CABAC具有数据依赖性,因此很难并行化并因此限制了其吞吐量。表示为量化变换系数的预测误差/残差占CABAC工作量的大部分。已经对上下文选择和变换系数编码中的扫描进行了各种改进,这些改进使HEVC中的CABAC相对于H.264 / AVC可以潜在地实现更高的吞吐量和更高的编码增益。合并/跳过模式是HEVC中的编码效率增强工具;并行合并/跳过打破了常规ME与合并/跳过ME之间的依赖关系,从而为高吞吐量和高效HEVC编码器设计提供了灵活性。对于超高清(UHD)视频(例如4kx2k和8kx4k分辨率),低延迟和实时处理可能超出单个核心编解码器的能力。切片是一种有效的工具,可通过多核UHD视频编解码器的吞吐量可扩展实现,实现内核之间的像素速率平衡以实现并行处理。使用均匀划分的图块,只需复制单个核心编解码器并在其上添加图块边界处理核心,即可实现多核视频编解码器。这些工具说明,在设计视频编码算法时考虑实现成本可以提高处理速度并降低实现成本,同时仍然在下一代视频编码标准中提供较高的编码效率。©(2012)COPYRIGHT光电仪器工程师协会( SPIE)。摘要的下载仅允许个人使用。

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