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Sample Adaptive Offset in the HEVC Standard

机译:HEVC标准中的样本自适应偏移

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摘要

This paper provides a technical overview of a newly added in-loop filtering technique, sample adaptive offset (SAO), in High Efficiency Video Coding (HEVC). The key idea of SAO is to reduce sample distortion by first classifying reconstructed samples into different categories, obtaining an offset for each category, and then adding the offset to each sample of the category. The offset of each category is properly calculated at the encoder and explicitly signaled to the decoder for reducing sample distortion effectively, while the classification of each sample is performed at both the encoder and the decoder for saving side information significantly. To achieve low latency of only one coding tree unit (CTU), a CTU-based syntax design is specified to adapt SAO parameters for each CTU. A CTU-based optimization algorithm can be used to derive SAO parameters of each CTU, and the SAO parameters of the CTU are inter leaved into the slice data. It is reported that SAO achieves on average 3.5% BD-rate reduction and up to 23.5% BD-rate reduction with less than 1% encoding time increase and about 2.5% decoding time increase under common test conditions of HEVC reference software version 8.0.
机译:本文提供了在高效视频编码(HEVC)中新添加的环路滤波技术(样本自适应偏移(SAO))的技术概述。 SAO的关键思想是通过首先将重构样本分为不同类别,为每个类别获取偏移量,然后将偏移量添加到类别的每个样本中来减少样本失真。每个类别的偏移量在编码器中已正确计算,并明确发送给解码器,以有效降低样本失真,而每个样本的分类在编码器和解码器上均进行,以显着节省辅助信息。为了实现仅一个编码树单元(CTU)的低延迟,指定了一种基于CTU的语法设计,以使每个CTU适应SAO参数。可以使用基于CTU的优化算法来推导每个CTU的SAO参数,并将CTU的SAO参数插入切片数据中。据报道,在HEVC参考软件8.0版的常见测试条件下,SAO的BD速率平均降低3.5%,BD速率最高降低23.5%,编码时间增加不到1%,解码时间增加约2.5%。

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