System anlaysis of power-aware H.264/AVC encoder based on fast inter prediction

Yeong-Kang Lai, Lien-Fei Chen, Shin-Ping Yang
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Abstract

In H.264 encoder system, the power dissipation of inter prediction occupies a quite large part. For low-power and power-aware system design, efficient fast inter prediction algorithms are the significant techniques to reduce the power consumption. In this paper, a system-level power-aware algorithm based on the early termination scheme of H.264 inter prediction is proposed for the power-aware H.264 encoder. The proposed early termination scheme for H.264 motion estimation is based on the statistical analysis of the transform coefficients. Due to the theoretical model, we develop a power-aware adaptive scheme with multiple thresholds derived from the statistical model to early terminate the motion estimation (ME) operations. Moreover, the proposed inter mode pre-decision is also utilized to early determine the best inter mode at integer motion estimation (IME) stage to substantially decrease the computational cycle counts of the fractional motion estimator (FME) and carry off the motion vector predictor (MVP). According to the experimental results, our system level fast inter prediction design methodology not only preserves fine RD performance but also eliminates the unnecessary operations in both IME stage and FME stage to realize the power-aware H.264 encoder system.
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基于快速互预测的功率感知H.264/AVC编码器系统分析
在H.264编码器系统中,码间预测的功耗占据了相当大的一部分。对于低功耗和功耗感知的系统设计,高效快速的互预测算法是降低功耗的重要技术。本文提出了一种基于H.264内部预测提前终止方案的系统级功率感知算法,用于功率感知的H.264编码器。提出了一种基于变换系数统计分析的H.264运动估计早期终止方案。根据理论模型,我们开发了一种功率感知的自适应方案,该方案使用从统计模型中导出的多个阈值来早期终止运动估计(ME)操作。此外,所提出的模式间预决策还用于在整数运动估计(IME)阶段早期确定最佳模式间,从而大大减少分数运动估计器(FME)的计算周期计数,并实现运动矢量预测器(MVP)。实验结果表明,我们的系统级快速互预测设计方法不仅保持了良好的RD性能,而且消除了在IME阶段和FME阶段不必要的操作,实现了功率感知的H.264编码器系统。
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