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Optimal model-based complexity control for H.264 video encoding

机译:H.264视频编码的基于模型的最优复杂度控制

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摘要

An H.264 video encoder adopts multiple encoding tools to achieve high coding efficiency at the expense of high computational complexity. The allowable computational complexity for real-time video encoding, however, is generally limited in a wireless handset. This research proposes a complexity control mechanism that is composed of two algorithms to minimise the distortion of each encoded video frame under the computational complexity constraint and the rate constraint. The first proposed algorithm performs optimal complexity allocation among encoding tools based on a new complexity-rate-distortion (C-R-D) model. This model precisely describes how each encoding tool influences the C-R-D performance of the encoder with concise formulas. Accordingly, the algorithm obtains the optimal complexity of each encoding tool by a closed-form solution with small complexity overhead. Based on a new C-D model of motion estimation, this work proposes the second algorithm that performs optimal complexity allocation among macro-blocks to further allocate suitable complexity to each macro-block. Experiments performed on a software-optimised source code show that these two algorithms yield superior performance to the existing algorithms.
机译:H.264视频编码器采用多种编码工具来实现高编码效率,但代价是计算复杂度高。但是,实时视频编码所允许的计算复杂度通常在无线手机中受到限制。这项研究提出了一种复杂度控制机制,该机制由两种算法组成,以在计算复杂度约束和速率约束下最大程度地减少每个编码视频帧的失真。第一个提出的算法基于新的复杂度率失真(C-R-D)模型在编码工具之间执行最佳复杂度分配。该模型使用简洁的公式精确地描述了每种编码工具如何影响编码器的C-R-D性能。因此,该算法通过具有小复杂度开销的闭式解来获得每个编码工具的最佳复杂度。基于新的运动估计C-D模型,这项工作提出了第二种算法,该算法在宏块之间执行最佳复杂度分配,以进一步为每个宏块分配合适的复杂度。在软件优化的源代码上进行的实验表明,这两种算法比现有算法具有更高的性能。

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  • 来源
    《Image Processing, IET》 |2012年第1期|p.60-71|共12页
  • 作者

    Chien M.-C.; Chang P.-C.;

  • 作者单位

    Department of Communication Engineering, National Central University, Taoyuan 320, Taiwan;

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  • 正文语种 eng
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