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首页> 外文期刊>IEEE Transactions on Circuits and Systems for Video Technology >Source Distortion Temporal Propagation Analysis for Random-Access Hierarchical Video Coding Optimization
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Source Distortion Temporal Propagation Analysis for Random-Access Hierarchical Video Coding Optimization

机译:随机访问分层视频编码优化的源失真时间传播分析

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摘要

Due to the widely used inter prediction in the current video coding standards, encoding units in different frames is of temporal dependency in that the rate-distortion optimization (RDO) of one unit may affect the coding performance of the following units in the temporal domain. To achieve optimal coding solution for a given video sequence, temporal dependency among units needs to be considered in the RDO process, which is known as the temporally dependent RDO (TD-RDO). The hierarchical coding structure (HCS) employed in the High Efficiency Video Coding (HEVC) standard further complicates this problem by grouping frames into different layers of varying coding strategies, leading to a more complex temporal relationship. In our earlier work, we addressed TD-RDO for the low delay HCS (LD-HCS), where only uni-prediction is considered. This paper aims to address more complicated TD-RDO under random access HCS (RA-HCS), where both uni-prediction and bi-prediction are considered, making the temporal relationship even more intricate. The temporal dependency introduced in the RA-HCS is thoroughly examined and an RA-based TD-RDO scheme is formulated for each layer by modeling temporal propagation of distortion under different prediction types. Based on the formulation, the global Lagrange multiplier can be obtained analytically. Moreover, the effect of random access point pictures is considered in the RA-based TD-RDO scheme. The proposed method can be simply realized by updating the Lagrange multiplier as in the independent RDO formulation or combined with adjusting quantization parameter (QP) for better results in terms of BD-rate saving. Experimental results show that under RA-HCS, the proposed method, by adapting the Lagrange multiplier only, can achieve about 2.2% bitrate savings in average. With multi-QP optimization, an average BD-rate gain of 5.2% can be obtained.
机译:由于当前视频编码标准中广泛使用的帧间预测,因此不同帧中的编码单元具有时间依赖性,因为一个单元的速率失真优化(RDO)可能会影响时域中后续单元的编码性能。为了实现给定视频序列的最佳编码解决方案,需要在RDO过程中考虑单元之间的时间依赖性,这被称为时间依赖性RDO(TD-RDO)。高效视频编码(HEVC)标准中采用的分层编码结构(HCS)通过将帧分为不同编码策略的不同层,进一步使此问题复杂化,从而导致更为复杂的时间关系。在我们的早期工作中,我们针对低延迟HCS(LD-HCS)解决了TD-RDO,其中仅考虑了单预测。本文旨在解决在随机访问HCS(RA-HCS)下更复杂的TD-RDO,其中同时考虑了单预测和双向预测,从而使时间关系更加复杂。彻底检查了RA-HCS中引入的时间依赖性,并通过对不同预测类型下失真的时间传播建模,为每层制定了基于RA的TD-RDO方案。根据公式,可以通过分析获得全局拉格朗日乘数。此外,在基于RA的TD-RDO方案中考虑了随机接入点图片的影响。可以通过更新Lagrange乘法器(如独立RDO公式中所示)或与调整量化参数(QP)组合以获得BD速率节省的更好结果来简单地实现该方法。实验结果表明,在RA-HCS下,仅采用Lagrange乘法器,该方法平均可节省约2.2%的比特率。通过多QP优化,可获得5.2%的平均BD速率增益。

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