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A Foreground-Background-Based CTU λ Decision Algorithm for HEVC Rate Control of Surveillance Videos

机译:基于前景背景的CTUλ决策视频监控视频的HEVC速率控制算法

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Although HEVC rate control can achieve high coding efficiency, it still does not fully utilize the special characteristics of surveillance videos, which typically have a moving foreground and relatively static background. For surveillance videos, it is usually necessary to provide a better coding quality of the moving foreground. In this paper, a foreground-background CTU λ separate decision scheme is proposed. First, low-complexity pixel-based segmentation is presented to obtain the foreground and the background. Second, the rate distortion (RD) characteristics of the foreground and the background are explored. With the rate distortion optimization (RDO) process, the average CTU λ value of the foreground or the background should be equal to the frame λ. Then, a separate optimal CTU λ decision is proposed with a separate λ clipping method. Finally, a separate updating process is used to obtain reasonable parameters for the foreground and the background. The experimental results show that the quality of the foreground is improved by 0.30 dB in the random access configuration and 0.45 dB in the low delay configuration without degradation of either the rate control accuracy or whole frame quality.
机译:尽管HEVC速率控制可以实现较高的编码效率,但它仍未充分利用通常具有移动前景和相对静态背景的监视视频的特殊特性。对于监视视频,通常需要提供更好的移动前景编码质量。本文提出了一种前后台CTUλ分离决策方案。首先,提出了基于低复杂度像素的分割方法,以获得前景和背景。其次,探讨了前景和背景的速率失真(RD)特性。通过速率失真优化(RDO)过程,前景或背景的平均CTUλ值应等于帧λ。然后,采用单独的λ削波方法提出了单独的最优CTUλ决策。最后,使用单独的更新过程来获取前景和背景的合理参数。实验结果表明,在随机访问配置中,前景质量提高了0.30 dB,在低延迟配置中,前景质量提高了0.45 dB,而不会降低速率控制精度或整个帧质量。

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