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Rate-distortion-complexity analysis for prediction unit modes in 3D-HEVC depth coding

机译:3D-HEVC深度编码中预测单元模式的速率失真复杂度分析

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3D-HEVC achieves significant compression efficiency thanks to the addition of several tools and features for multiview and 3D video content on top of those already available in HEVC. However, such gains come at the cost of large increases in the encoding computational complexity, which is a problem for computationally and battery-constrained devices. As the use of each tool or feature yields different compression efficiency, those that do not contribute significantly should be the first to be disabled in a complexity-constrained system with limited computational resources. Thus, this paper presents two major analyses on the use of Prediction Unit (PU) modes in 3D-HEVC: a preliminary, statistical study and a Rate-Distortion-Complexity (RDC) analysis. The first study observed the occurrence of asymmetric and rectangular PU modes in depth maps, while the RDC analysis evaluated the impact caused by the deactivation of the least used modes during the encoding of depth maps, based on the results found in the preliminary study. Experimental results have shown that a computational complexity reduction of 9% can be achieved with a negligible rate-distortion penalty (0.1%) if the least used modes are disabled.
机译:3D-HEVC通过在HEVC中已经提供的工具和功能上增加了多视图和3D视频内容的多种工具和功能,可实现显着的压缩效率。但是,这样的增益是以大大增加编码计算复杂度为代价的,这对于计算和电池受限的设备是一个问题。由于每种工具或功能的使用会产生不同的压缩效率,因此,在计算资源有限的复杂性受限的系统中,首先应禁用那些没有显着贡献的压缩功能。因此,本文介绍了有关在3D-HEVC中使用预测单位(PU)模式的两个主要分析:初步统计研究和速率失真复杂度(RDC)分析。第一项研究观察了深度图中不对称和矩形PU模式的发生,而RDC分析根据初步研究中发现的结果,评估了在深度图编码过程中停用最少使用的模式所造成的影响。实验结果表明,如果禁用了最少使用的模式,则可以以可忽略不计的速率失真损失(0.1%)实现9%的计算复杂度降低。

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