H.264/AVC中基于动态分组和自适应调整的高效模式决策算法

Bin Zhan, Baochun Hou, Reza Sotudeh
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引用次数: 2

摘要

支持速率失真优化(RDO)的模式决定(MD)是H.264/AVC引入的最重要的技术之一。通过对码率失真进行穷举计算,提高了视频编码质量。然而,计算复杂性显著增加,这是实时和低功耗应用的关键挑战。针对H.264/AVC编码器,提出了一种新的快速MD算法。该算法采用一组动态候选模间/模内来减少计算量。为了最大限度地减少由于先前编码帧的模式选择不当而造成的性能损失,提出了一种基于比特率和PSNR波动的自适应调整方案。实验结果表明,该算法平均缩短了35%的编码时间,在比特率提高不到1%的情况下,PSNR的损失通常控制在0.1 dB以内。
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An Efficient Mode Decision Algorithm Based on Dynamic Grouping and Adaptive Adjustment for H.264/AVC
The rate distortion optimization (RDO) enabled mode decision (MD) is one of the most important techniques introduced by H.264/AVC. By adopting the exhaustive calculation of rate distortion, the optimal MD enhances the video encoding quality. However, the computational complexity is significantly increased, which is a key challenge for real-time and low power consumption applications. This paper presents a new fast MD algorithm for highly efficient H.264/AVC encoder. The proposed algorithm employs a dynamic group of candidate inter/intra modes to reduce the computational cost. In order to minimize the performance loss incurred by improper mode selection for the previously encoded frames, an adaptive adjustment scheme based on the undulation of bitrate and PSNR is suggested. Experimental results show that the proposed algorithm reduces the encoding time by 35% on average, and the loss of PSNR is usually limited in 0.1 dB with less than 1% increase of bitrate.
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