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首页> 外文期刊>IEEE Transactions on Broadcasting >Fast Rate-Distortion Optimization for Depth Maps in 3-D Video Coding
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Fast Rate-Distortion Optimization for Depth Maps in 3-D Video Coding

机译:3D视频编码中深度图的快速速率失真优化

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摘要

To ensure the fidelity of virtual views, rate-distortion optimization (RDO) criterion for the 3D extension of the High Efficiency Video Coding (3D-HEVC) is well designed, in which the synthesized view distortion (SVD) is introduced to derive the rate-distortion (RD) cost. To obtain accurate SVDs, the rendering operation is employed which demands a fairly high computational complexity. To address this problem, a fast RDO method for depth maps is proposed, which checks the RD cost during its calculation process. Specifically, given a coding mode, the RD cost is composed of several cumulative items. If the accumulated RD cost is equal to or exceeds the minimum RD cost of previously coded modes, it will not be necessary to continue the RD cost calculation for the mode. To reduce the encoding complexity, existing methods usually aim at reducing the number of tested modes or block partitions. To the best of our knowledge, it is the first time that the latent redundant complexity in the RD cost calculation is investigated and removed. Experimental results demonstrate that, compared with the 3D-HEVC reference software, the proposed method can save 28.1 of depth coding time with a small coding gain (0.04 BD-rate saving). An additional test is designed to evaluate four typical fast coding methods with/without the proposed method. Extensive results verify that the proposed method can be seamlessly combined with the state-of-the-art methods.
机译:为了保证虚拟视图的保真度,该文精心设计了高效视频编码(3D-HEVC)3D扩展的速率失真优化(RDO)准则,其中引入合成视图失真(SVD)来推导速率失真(RD)成本。为了获得精确的SVD,采用了渲染操作,这需要相当高的计算复杂性。针对该问题,该文提出一种深度图快速RDO方法,在计算过程中检查RD成本。具体而言,给定编码模式,RD 成本由多个累积项目组成。如果累计 RD 成本等于或超过先前编码模式的最小 RD 成本,则无需继续计算该模式的 RD 成本。为了降低编码复杂性,现有方法通常旨在减少测试模式或块分区的数量。据我们所知,这是第一次调查和消除 RD 成本计算中的潜在冗余复杂性。实验结果表明,与3D-HEVC参考软件相比,所提方法以较小的编码增益(节省0.04%BD速率)节省了28.1%的深度编码时间。设计了一项额外的测试来评估四种典型的快速编码方法,无论是否使用所提出的方法。大量结果验证了所提方法可以与最先进的方法无缝结合。

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