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首页> 外文期刊>IEEE transactions on multimedia >Fast Depth and Inter Mode Prediction for Quality Scalable High Efficiency Video Coding
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Fast Depth and Inter Mode Prediction for Quality Scalable High Efficiency Video Coding

机译:质量可扩展高效视频编码的快速深度和帧间模式预测

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The scalable high efficiency video coding (SHVC) is an extension of high efficiency video coding (HEVC). It introduces multiple layers and inter-layer prediction, thus significantly increases the coding complexity on top of the already complicated HEVC encoder. In inter prediction for quality SHVC, in order to determine the best possible mode at each depth level, a coding tree unit can be recursively split into four depth levels, including merge mode, inter2Nx2N, inter2NxN, interNx2N, interNxN, inter2NxnU, inter2NxnD, internLx2N and internRxx2N, intra modes and inter-layer reference (ILR) mode. This can obtain the highest coding efficiency, but also result in very high coding complexity. Therefore, it is crucial to improve coding speed while maintaining coding efficiency. In this research, we have proposed a new depth level and inter mode prediction algorithm for quality SHVC. First, the depth level candidates are predicted based on inter-layer correlation, spatial correlation and its correlation degree. Second, for a given depth candidate, we divide mode prediction into square and non-square mode predictions respectively. Third, in the square mode prediction, ILR and merge modes are predicted according to depth correlation, and early terminated whether residual distribution follows a Gaussian distribution. Moreover, ILR mode, merge mode and inter2Nx2N are early terminated based on significant differences in Rate Distortion (RD) costs. Fourth, if the early termination condition cannot be satisfied, non-square modes are further predicted based on significant differences in expected values of residual coefficients. Finally, inter-layer and spatial correlations are combined with residual distribution to examine whether to early terminate depth selection. Experimental results have demonstrated that, on average, the proposed algorithm can achieve a time saving of 71.14%, with a bit rate increase of 1.27%.
机译:可扩展的高效视频编码(SHVC)是高效视频编码(HEVC)的扩展。它引入多个层和层间预测,从而显着增加了已经复杂的HEVC编码器的顶部的编码复杂度。在对质量SHVC的帧间预测中,为了确定每个深度级别的最佳模式,可以递归地分为四个深度电平,包括合并模式,INTER2NX2N,INTER2NXN,INTERNX2N,INTERNXN,INTER2NXNU,INTER2NXND,INTERNLX2N和InternRXX2N,内部模式和层间参考(ILR)模式。这可以获得最高的编码效率,但也导致非常高的编码复杂性。因此,在保持编码效率的同时提高编码速度至关重要。在本研究中,我们提出了一种新的深度和互相模式预测算法的质量SHVC。首先,基于层间相关性,空间相关性及其相关程度来预测深度​​级候选。其次,对于给定深度候选,我们将模式预测分别分别分别进入正方形和非方形模式预测。第三,在方形模式预测中,根据深度相关预测ILR和合并模式,并且早期终止是否遵循高斯分布。此外,基于速率失真(RD)成本的显着差异,早期终止ILR模式,合并模式和Inter2NX2N。第四,如果不能满足早期终止条件,则基于残留系数的预期值的显着差异进一步预测非方形模式。最后,层间和空间相关性与残余分布相结合,以检查是否早期终止深度选择。实验结果表明,平均而言,所提出的算法可以达到71.14%的时间,比特率增加1.27%。

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