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Flexible Mode Selection and Complexity Allocation in High Efficiency Video Coding

机译:高效视频编码中的灵活模式选择和复杂度分配

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To improve compression performance, High Efficiency Video Coding (HEVC) employs a quad-tree based block representation, namely Coding Tree Unit (CTU), which can support larger partitions and more coding modes than a traditional macroblock. Despite its high compression efficiency, the number of combinations of coding modes increases dramatically, which results in high computational complexity at the encoder. Here we propose a flexible framework for HEVC coding mode selection, with a user-defined global complexity factor. Based on linear programming, a hierarchical complexity allocation scheme is developed to allocate computational complexities among frames and Coding Units (CUs) to maximize the overall Rate-Distortion (RD) performance. In each CU, with the allocated complexity factor, a mode mapping based approach is employed for coding mode selection. Extensive experiments demonstrate that, with a series of global complexity factors, the proposed model can achieve good trade-offs between computational complexity and RD performance.
机译:为了提高压缩性能,高效视频编码(HEVC)采用了基于四叉树的块表示形式,即编码树单元(CTU),与传统的宏块相比,它可以支持更大的分区和更多的编码模式。尽管其压缩效率很高,但是编码模式的组合数量却急剧增加,这导致编码器的计算复杂度很高。在这里,我们提出了一个灵活的HEVC编码模式选择框架,具有用户定义的全局复杂度因子。基于线性编程,开发了一种层次复杂性分配方案,可以在帧和编码单元(CU)之间分配计算复杂性,以最大程度地提高整体速率失真(RD)性能。在每个CU中,利用分配的复杂度因子,采用基于模式映射的方法来编码模式选择。大量实验表明,利用一系列全局复杂性因素,该模型可以在计算复杂度和RD性能之间取得良好的折衷。

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