A better bit-allocation algorithm for H.264/SVC

Vo Phuong Binh, Shih-Hsuan Yang
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引用次数: 4

Abstract

Bit allocation is an essential issue for the rate-control performance of an H.264 scalable video encoder. In this paper, we propose an efficient bit allocation algorithm at the frame level for H.264 temporal scalable video coding. The bit budget for temporal layers is based on the target bit rate, the hierarchical level, the buffer constraints and the predicted mean absolute difference (MAD) of the current frame. This bit allocation algorithm is also extended to the spatial enhancement layers by considering the inter-layer MAD prediction and the relationship between the inter-layer target bit rates. Experimental results show that the proposed algorithm efficiently prevents the buffer overflow and underflow, achieves the acceptable accurate bitrates (with DBR less than 2%), and better visual quality, as compared to the state-of-the-art approaches in the literature.
一种更好的H.264/SVC位分配算法
位分配是影响H.264可扩展视频编码器速率控制性能的关键问题。在本文中,我们提出了一种有效的帧级位分配算法,用于H.264时间可伸缩视频编码。时间层的比特预算基于目标比特率、分层水平、缓冲区约束和当前帧的预测平均绝对差(MAD)。通过考虑层间MAD预测和层间目标比特率之间的关系,将该位分配算法扩展到空间增强层。实验结果表明,与文献中最先进的方法相比,该算法有效地防止了缓冲区溢出和下溢,达到了可接受的精确比特率(DBR小于2%),并且具有更好的视觉质量。
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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