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首页> 外文期刊>Circuits and Systems for Video Technology, IEEE Transactions on >Bit Allocation for Spatial Scalability Coding of H.264/SVC With Dependent Rate-Distortion Analysis
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Bit Allocation for Spatial Scalability Coding of H.264/SVC With Dependent Rate-Distortion Analysis

机译:H.264 / SVC空间可伸缩编码的比特分配及其相关的速率失真分析

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摘要

We propose a model-based spatial layer bit allocation algorithm for H.264/scalable video coding (SVC) in this paper. The challenge of this problem lies in the fact that the rate-distortion (R-D) behavior of an enhancement layer is dependent on its preceding layers because of inter-layer prediction. To solve it, we first focus on the case of two spatial layers, derive the distortion and rate models of the dependent layer analytically, and develop a low-complexity bit allocation algorithm. It is shown by experimental results that the proposed two-layer bit allocation algorithm can achieve the coding performance close to the optimal R-D performance based on the full search method. Then, we extend this result to multilayer bit allocation by performing the two-layer allocation scheme recursively. Finally, we compare the performance of group of pictures-based and frame-based spatial layer bit allocation schemes at a fixed temporal resolution. The superior performance of the proposed spatial layer bit allocation algorithm is demonstrated using Joint Scalable Video Model reference software algorithm and two prior H.264/SVC rate control algorithms as the benchmarks.
机译:本文提出了一种基于模型的H.264 /可伸缩视频编码(SVC)空间层比特分配算法。该问题的挑战在于以下事实:由于层间预测,增强层的速率失真(R-D)行为取决于其先前的层。为了解决这个问题,我们首先关注两个空间层的情况,通过分析得出相关层的失真和速率模型,并开发一种低复杂度的位分配算法。实验结果表明,基于全搜索方法,该两层比特分配算法可以达到接近最佳R-D性能的编码性能。然后,通过递归执行两层分配方案,将此结果扩展到多层位分配。最后,我们以固定的时间分辨率比较了基于图片和基于帧的空间层位分配方案组的性能。以联合可伸缩视频模型参考软件算法和两个先前的H.264 / SVC速率控制算法为基准,证明了所提出的空间层比特分配算法的优越性能。

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