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Memory bandwidth reduction for H.264 and HEVC encoders using lossless reference frame coding

机译:使用无损参考帧编码减少H.264和HEVC编码器的内存带宽

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This paper presents a hardware-efficient algorithm for external memory bandwidth reduction focusing on the state-of-the-art video encoders, like H.264/AVC and HEVC. The proposed approach is a lossless solution based on an adaptation of the traditional Huffman algorithm. This solution is entitled RFCAVLC8T (Reference Frame Context Adaptive Variable-Length Coder with 8 Tables) and is based on the use of off-line defined static Huffman tables. The RFCAVLC8T is a hardware-efficient version of the Huffman algorithm that employs eight static tables to avoid the cost of the on-the-fly Huffman statistical analysis. The best table to encode a block is selected at run time using a context evaluation, resulting in a context-adaptive configuration. The use of RFCAVLC8T reaches an average compression rate higher than 35% for the evaluated video sequences, with computational cost of a single VLC.
机译:本文介绍了一种用于外部存储器带宽减少的硬件高效算法,其专注于最先进的视频编码器,如H.264 / AVC和HEVC。所提出的方法是基于传统霍夫曼算法的改编的无损解决方案。此解决方案具有RFCAVLC8T(带有8个表的参考帧上下文自适应变量长度编码器,并且基于离线定义的静态霍夫曼表的使用。 RFCAVLC8T是一种硬件高效版本的霍夫曼算法,采用了八个静态表来避免了飞行霍夫曼统计分析的成本。使用上下文评估在运行时选择要编码块的最佳表,从而产生上下文自适应配置。使用RFCAVLC8T达到评估视频序列的平均压缩率高于35%,具有单个VLC的计算成本。

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