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Comparative Rate-Distortion-Complexity Analysis of HEVC and AVC Video Codecs

机译:HEVC和AVC视频编解码器的速率失真复杂度比较分析

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This paper analyzes the rate-distortion-complexity of High Efficiency Video Coding (HEVC) reference video codec (HM) and compares the results with AVC reference codec (JM). The examined software codecs are HM 6.0 using Main Profile (MP) and JM 18.0 using High Profile (HiP). These codes are benchmarked under the all-intra (AI), random access (RA), low-delay $B$ (LB), and low-delay $P$ (LP) coding configurations. In order to obtain a fair comparison, JM HiP anchor codec has been configured to conform to HM MP settings and coding configurations. The rate-distortion comparisons rely on objective quality assessments, i.e., bit rate differences for equal PSNR. The complexities of HM and JM have been profiled at the cycle level with Intel VTune on Intel Core 2 Duo processor. The coding efficiency of HEVC is drastically better than that of AVC. According to our experiments, the average bit rate decrements of HM MP over JM HiP are 23%, 35%, 40%, and 35% under the AI, RA, LB, and LP configurations, respectively. However, HM achieves its coding gain with a realistic overhead in complexity. Our profiling results show that the average software complexity ratios of HM MP and JM HiP encoders are $3.2times$ in the AI case, $1.2times$ in the RA case, $1.5times$ in the LB case, and $1.3times$ in the LP case. The respective ratios with HM MP and JM HiP decoders are $2.0times$, $1.6times$, $1.5times$, and $1.4times$. This paper also reveals the bottlenecks of HM codec and provides implementation guidelines for future real-time HEVC codecs.
机译:本文分析了高效视频编码(HEVC)参考视频编解码器(HM)的速率失真复杂度,并将结果与​​AVC参考编解码器(JM)进行了比较。检查的软件编解码器是使用Main Profile(MP)的HM 6.0和使用High Profile(HiP)的JM 18.0。这些代码以全帧内(AI),随机访问(RA),低延迟$ B $(LB)和低延迟$ P $(LP)编码配置为基准。为了获得公平的比较,已将JM HiP锚编解码器配置为符合HM MP设置和编码配置。速率失真比较依赖于客观的质量评估,即针对相同的PSNR的比特率差异。 HM和JM的复杂性已通过Intel Core 2 Duo处理器上的Intel VTune在周期级别进行了概述。 HEVC的编码效率大大优于AVC。根据我们的实验,在AI,RA,LB和LP配置下,HM MP相对于JM HiP的平均比特率降低分别为23%,35%,40%和35%。但是,HM以复杂的实际开销实现了编码增益。我们的分析结果表明,HM MP和JM HiP编码器的平均软件复杂度比率在AI情况下为$ 3.2,在RA情况下为$ 1.2,在LB情况下为$ 1.5,在LP情况下为$ 1.3。 。 HM MP和JM HiP解码器的比率分别为$ 2.0×,$ 1.6×,$ 1.5×和$ 1.4×。本文还揭示了HM编解码器的瓶颈,并为将来的实时HEVC编解码器提供了实现指南。

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