Prediction of quad-tree partitioning for budgeted energy HEVC encoding

Alexandre Mercat, F. Arrestier, M. Pelcat, W. Hamidouche, D. Ménard
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引用次数: 9

Abstract

High Efficiency Video Coding (Hevc), the newest video encoding standard, provides up to 50% bitrate savings compared to the state-of-art H.264/AVC standard for the same perceptual video quality. In the last few years, the Internet of Things (IoT) has become a reality. Forthcoming applications are likely to boost mobile video demand to an unprecedented level. A large number of systems are likely to integrate HEVC codec in the long run and will need to be energy aware. In this context, constraining the energy consumption of HEVC encoder becomes a challenging task for embedded applications based on a software encoder. The most frequent approach to overcome this issue consists in optimising the coding tree structure to balance compression efficiency and energy consumption. In the purpose of budgeting the energy consumption of real-time HEVC encoder, we propose in this paper a variance-aware quad-tree prediction to limit the recursive RDO process. The experimental results show that the proposed energy reduction scheme achieve on average 60% of energy reduction for a slight bit rate increase of 3.4%.
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预算能量HEVC编码四叉树分区预测
高效视频编码(Hevc)是最新的视频编码标准,与最先进的H.264/AVC标准相比,在相同的感知视频质量下,可提供高达50%的比特率节省。在过去的几年里,物联网(IoT)已经成为现实。即将推出的应用程序可能会将移动视频需求提升到前所未有的水平。从长远来看,大量的系统可能会集成HEVC编解码器,并且需要具有能源意识。在这种背景下,限制HEVC编码器的能量消耗成为基于软件编码器的嵌入式应用的一项具有挑战性的任务。克服这个问题最常见的方法是优化编码树结构,以平衡压缩效率和能耗。为了对实时HEVC编码器的能量消耗进行预算,本文提出了一种方差感知的四叉树预测来限制递归RDO过程。实验结果表明,在比特率略微提高3.4%的情况下,所提出的降耗方案平均实现了60%的降耗。
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