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Adaptive Inter CU Depth Decision for HEVC Using Optimal Selection Model and Encoding Parameters

机译:基于最优选择模型和编码参数的HEVC自适应CU深度决策

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摘要

High efficiency video coding adopts a new hierarchical coding structure, including coding unit (CU), prediction unit (PU), and transform unit to achieve higher coding efficiency than its predecessor H.264/AVC high profile. However, its hierarchical unit partitioning strategy leads to huge computational complexity. In this paper, an adaptive inter CU depth decision algorithm is proposed, which exploits both temporal correlation of CU depth and available encoding parameters. An optimal selection model of CU depth is established to estimate the range of candidate CU depth by exploiting the temporal correlation of CU depth among current CU and temporally co-located CUs. To reduce the accumulated errors in the process of CU depth prediction, the maximum depth of the co-located CUs and the coded block flag (CBF) of the current CU are used. Moreover, PU size and CBF information are also used to decide the maximum depth for the current CU. Experimental results show that the proposed CU depth decision approach reduces 56.3% and 51.5% average encoding time, and the Bjontegaard delta bit rate increases only 1.3% and 1.1% for various test sequences under the random access and the low delay B conditions, respectively.
机译:高效视频编码采用新的分层编码结构,包括编码单元(CU),预测单元(PU)和变换单元,以实现比其前身H.264 / AVC高配置文件更高的编码效率。但是,其分层单元划分策略导致巨大的计算复杂性。本文提出了一种自适应的CU内部深度决策算法,该算法同时利用了CU深度的时间相关性和可用的编码参数。建立了CU深度的最佳选择模型,以通过利用当前CU与时间上位于同一位置的CU之间的CU深度的时间相关性来估计候选CU深度的范围。为了减少CU深度预测过程中的累积误差,使用了同位CU的最大深度和当前CU的编码块标记(CBF)。此外,PU大小和CBF信息还用于确定当前CU的最大深度。实验结果表明,在随机访问和低延迟B条件下,各种测试序列的CU深度决策方法均减少了56.3%和51.5%的平均编码时间,并且Bjontegaard增量比特率分别仅增加了1.3%和1.1%。

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