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首页> 外文期刊>Journal of Real-Time Image Processing >Square-type-first inter-CU tree search algorithm for acceleration of HEVC encoder
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Square-type-first inter-CU tree search algorithm for acceleration of HEVC encoder

机译:用于HEVC编码器加速的平方型优先CU间树搜索算法

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摘要

In this paper, a fast inter-coding algorithm is proposed to reduce the computational load of HEVC encoders. The HEVC reference model (HM) employs the recursive depth-first-search (DFS) of the quad-tree search in terms of rate-distortion optimization in selecting the best coding modes for the best CU, PU, TU partitions, and many associated coding modes. The proposed algorithm evaluates the RD costs of the current CU only for its square-type PUs in the top-down search of the DFS. When the CU partition with the square-type PU is better than its sub-level CU partitions in terms of RD cost in bottom-up search of the DFS, the square type of current CU partition, along with its coding mode, is selected as the best partition. Otherwise, non-square-type PUs for the current CU level are evaluated. If the sub-partition is better than the CU with the non-square PUs, the sub-partition is finally selected as the optimum PU. Otherwise, the best non-square PU is selected as the best PU for the current level. Experimental results demonstrate that the proposed square-type-first inter-PU search can reduce the computational load in average encoding time by 66.7 % with 1-2 % BD loss over HM reference software. In addition, the proposed algorithm can yield an additional average time saving of 26.8-35.5 % against the three fast encoding algorithms adopted in HM.
机译:本文提出了一种快速的帧间编码算法,以减少HEVC编码器的计算量。 HEVC参考模型(HM)在选择最佳CU,PU,TU分区以及许多相关联的最佳编码模式时,根据速率失真优化,采用四叉树搜索的递归深度优先搜索(DFS)编码模式。所提出的算法仅在DFS的自顶向下搜索中评估当前CU的方型PU的RD成本。如果在DFS的自底向上搜索中,具有方形PU的CU分区在RD成本方面优于其子级CU分区,则将当前CU分区的方形类型及其编码模式选为最好的分区。否则,将评估当前CU级别的非方形PU。如果子分区比具有非正方形PU的CU更好,则最终选择该子分区作为最佳PU。否则,选择最佳非正方形PU作为当前级别的最佳PU。实验结果表明,与HM参考软件相比,提出的平方型优先PU间搜索可以将平均编码时间的计算量减少66.7%,而BD损失为1-2%。此外,与HM中采用的三种快速编码算法相比,所提出的算法可额外节省26.8-35.5%的平均时间。

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