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Hierarchical complexity control algorithm for HEVC based on coding unit depth decision

机译:基于编码单元深度决策的HEVC分层复杂性控制算法

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Abstract The next-generation High Efficiency Video Coding (HEVC) standard reduces the bit rate by 44% on average compared to the previous-generation H.264 standard, resulting in higher encoding complexity. To achieve normal video coding in power-constrained devices and minimize the rate distortion degradation, this paper proposes a hierarchical complexity control algorithm for HEVC on the basis of the coding unit depth decision. First, according to the target complexity and the constantly updated reference time, the coding complexity of the group of pictures layer and the frame layer is allocated and controlled. Second, the maximal depth is adaptively assigned to the coding tree unit (CTU) on the basis of the correlation between the residual information and the optimal depth by establishing the complexity-depth model. Then, the coding unit smoothness decision and adaptive low bit threshold decision are proposed to constrain the unnecessary traversal process within the maximal depth assigned by the CTU. Finally, adaptive upper bit threshold decision is used to continue the necessary traversal process at a larger depth than the maximal depth of allocation to guarantee the quality of important coding units. Experimental results show that our algorithm can reduce the encoding time by up to 50%, with notable control precision and limited performance degradation. Compared to state-of-the-art algorithms, the proposed algorithm can achieve higher control accuracy.
机译:摘要与上一代H.264标准相比,下一代高效视频编码(HEVC)标准将比特率降低44%,导致编码复杂性更高。为了在功率约束设备中实现正常视频编码并最小化速率失真劣化,提出了基于编码单元深度决定的HEVC的分层复杂性控制算法。首先,根据目标复杂性和不断更新的参考时间,分配和控制图像层组和帧层的编码复杂度。其次,通过建立复杂性深度模型,基于残差信息与最佳深度之间的相关性,自适应地分配最大深度。然后,提出了编码单元平滑判定和自适应低位阈值决定,以在CTU分配的最大深度内限制不必要的遍历过程。最后,自适应上位阈值决定用于在比最大分配深度更大的深度下继续必要的遍历过程,以保证重要的编码单元的质量。实验结果表明,我们的算法可以将编码时间降低到50%,具有显着的控制精度和有限的性能下降。与最先进的算法相比,所提出的算法可以实现更高的控制精度。

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