Efficient frame complexity-based rate control for H.264/AVC intra-frame

Qianli Lu, F. Cen, Weisheng Xu
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引用次数: 1

Abstract

This paper presents a rate control (RC) scheme for intra-frame coding in H.264/AVC. An adaptive rate-quantization (R-Q) model is proposed for intra-frames by utilizing the average standard deviation (ASD) to measure the content complexity of each intra-frame. The initial QP decision is based on the distribution of the standard deviation (SD) values of macroblocks (MBs) in the initial frame. The scene change is detected with the complexity difference of adjacent frames and the appropriate quantization parameter (QP) is determined for the scene-transition frame. Experimental results show that the proposed RC scheme achieves more accurate rate estimation and maintains the buffer fullness at a lower level than the state of the art, especially for the sequences containing scene changes.
基于帧复杂度的H.264/AVC帧内速率控制
提出了一种H.264/AVC帧内编码的速率控制方案。提出了一种帧内自适应速率量化(R-Q)模型,利用平均标准偏差(ASD)来度量每个帧内的内容复杂度。初始QP决策基于初始帧中宏块(mb)的标准差(SD)值的分布。利用相邻帧的复杂度差检测场景变化,确定场景过渡帧的量化参数。实验结果表明,与现有的算法相比,该算法获得了更精确的速率估计,并将缓冲满度保持在较低的水平,特别是对于包含场景变化的序列。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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