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HEVC early termination methods for optimal CU decision utilizing encoding residual information

机译:利用编码残差信息实现最佳CU决策的HEVC提前终止方法

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High-efficiency video coding (HEVC) utilizes a quadtree-structured coding unit (CU) for more possible sizes of basic blocks for later prediction. The exhaustive search for the optimal CU depth requires high complexity, which causes difficulties for real-time streaming. In the proposed method, we make use of the residual statistics of prediction units (PUs) in the current encoded CU to make a decision on CU early termination. The residual histogram is discussed, and the optimal early termination (ET) zone is designed; if the PU residual statistics fall in the ET zone, the early termination is triggered. The optimal parameters for the ET zone are solved and analyzed in the training stage, and can be estimated with table lookup and simple computations in the testing stage. Another early termination method using the neighboring SKIP information is also proposed. We use SKIP information from more meaningful CU neighbors defined and used in HEVC. We combine the proposed residual-based and SKIP-based algorithms with a state-of-the-art method. The experimental results show that compared to two state-of-the-art methods in both low delay (LP) and random access (RA) configurations, our preferred proposed combination can achieve the best BDBR results (0.737% in LP and 0.471% in RA) with a good corresponding TS performances (49.87% in LP and 54.96% in RA), making HEVC more suitable for real-time applications.
机译:高效视频编码(HEVC)将四叉树结构的编码单元(CU)用于基本块的更多可能大小,以用于以后的预测。穷举搜索最佳CU深度要求很高的复杂度,这给实时流传输带来了困难。在提出的方法中,我们利用当前编码的CU中预测单元(PU)的残差统计信息来做出CU提前终止的决策。讨论了残差直方图,并设计了最佳提前终止(ET)区。如果PU剩余统计信息落在ET区域,则触发提前终止。在训练阶段解决并分析了ET区域的最佳参数,并且可以在测试阶段通过查表和简单计算来估计它们。还提出了使用相邻SKIP信息的另一种提前终止方法。我们使用来自HEVC中定义和使用的更有意义的CU邻居的SKIP信息。我们将提出的基于残差和基于SKIP的算法与最新方法结合在一起。实验结果表明,与低延迟(LP)和随机访问(RA)配置中的两种最新方法相比,我们首选的建议组合可以实现最佳的BDBR结果(LP中为0.737%,BDBR为0.471%) RA)具有良好的TS性能(LP中为49.87%,RA中为54.96%),使HEVC更适合于实时应用。

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