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Low-Complexity Encoder Framework for Window-Level Rate Control Optimization

机译:用于窗口级速率控制优化的低复杂度编码器框架

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摘要

There exists a tradeoff between visual quality smoothness and buffer constraint in rate control. Thus, a window model and a window-level rate control algorithm were proposed to handle such a tradeoff recently. However, the extra computational complexity and encoding delay were introduced due to a pre-analysis process in the window-level rate control. In this paper, the window model is first improved for a more convenient usage in practical encodings. Second, a new low-complexity encoder framework is proposed based on an open-loop motion estimation (ME). Third, a new memory-efficient algorithm is proposed to eliminate the drift error of open-loop ME. Fourth, the window-level rate control algorithm is improved to adapt to the proposed encoder framework. The experimental results show that the visual quality smoothness is much improved by the proposed algorithm against the traditional one of H.264/AVC. In addition, the improvement of the window-level rate control is better than the previous one in terms of both bit control accuracy and visual quality smoothness. Besides, the proposed encoder could be used to any other rate control algorithms with pre-analysis to reduce computational complexity.
机译:在速率控制中,视觉质量平滑度和缓冲区限制之间存在折衷。因此,最近提出了窗口模型和窗口级速率控制算法来处理这种折衷。但是,由于窗口级速率控制中的预分析过程,引入了额外的计算复杂度和编码延迟。在本文中,首先改进了窗口模型,以便在实际编码中更方便地使用。其次,基于开环运动估计(ME),提出了一种新的低复杂度编码器框架。第三,提出了一种新的内存有效算法来消除开环ME的漂移误差。第四,改进了窗口级速率控制算法以适应所提出的编码器框架。实验结果表明,相对于传统的H.264 / AVC,该算法大大提高了视觉质量的平滑度。另外,在位控制精度和视觉质量平滑度方面,窗口级速率控制的改进比以前的好。此外,所提出的编码器可用于具有预分析的任何其他速率控制算法,以降低计算复杂度。

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