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首页> 外文期刊>Journal of visual communication & image representation >A reduced computational effort mode-level scheme for 3D-HEVC depth maps intra-frame prediction
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A reduced computational effort mode-level scheme for 3D-HEVC depth maps intra-frame prediction

机译:用于3D-HEVC深度图的减少计算量模式级方案的帧内预测

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摘要

To encode the depth maps efficiently, 3D-HEVC introduced three intra-frame prediction tools: (i) Depth Intra Skip (DIS), (ii) Depth Modeling Modes (DMMs), and (iii) Segment-wise DC Coding (SDC) that raise the encoding effort. Therefore, we analyzed the most time-consuming steps at the intra-frame prediction and proposed a model-level scheme for reducing the encoding time. The most time-consuming encoding steps were the DMM-1 wedgelet search and the Rate-Distortion (RD) list evaluation in Transform-Quantization and SDC flows. Consequently, we proposed a scheme composed of two solutions for speeding up the DMM-1 and one solution for reducing the RD-list size, accelerating the RD-list evaluation. The DMM-1 speeding up solutions use the information of neighbor-encoded blocks and the data contained in the border of the encoding block to accelerate the wedgelet search. The proposed scheme reduces 31.9% the encoding time with an impact of 0.272% in the Bjontegaard Delta-rate (BD-rate), surpassing the related works.
机译:为了有效地对深度图进行编码,3D-HEVC引入了三种帧内预测工具:(i)深度帧内跳过(DIS),(ii)深度建模模式(DMM)和(iii)逐段DC编码(SDC)这增加了编码工作量。因此,我们分析了帧内预测中最耗时的步骤,并提出了一种用于减少编码时间的模型级方案。最耗时的编码步骤是DMM-1楔形小波搜索和变换量化和SDC流中的速率失真(RD)列表评估。因此,我们提出了一种方案,该方案由两种用于加快DMM-1速度的解决方案和一种用于减小RD列表大小,加速RD列表评估的解决方案组成。 DMM-1加速解决方案使用邻居编码块的信息和编码块边界中包含的数据来加快楔形搜索。所提出的方案减少了31.9%的编码时间,对Bjontegaard Delta速率(BD速率)的影响为0.272%,超过了相关工作。

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