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An Intra-Frame Rate Control Algorithm for Ultralow Delay H.264/Advanced Video Coding (AVC)

机译:超低延迟H.264 /高级视频编码(AVC)的帧内速率控制算法

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This paper presents an intra-fame rate control algorithm for ultralow delay H.264/AVC coding. The main goal of the proposed scheme is to allocate a proper bit budget to each macroblock (MB), based on its complexity (or activity). However, since a coder needs to start encoding a frame before buffering the whole frame for very low delay video streaming applications, the relative complexity of each MB can not be known in advance. So, the proposed algorithm predicts a relative complexity of a current MB from complexities of its spatially/temporally neighboring MBs, and then allocates a proper bit budget to the MB using the predicted complexity. Finally, quantization parameter of each MB is obtained by comparing the generated bits and allocated bit budget, and is refined for improving coding performance, based on information from the previous frame. Even though the required buffer size is only around one-third of average bits per a frame in order to achieve very low coding delay, the proposed algorithm provides reliable coding performance compared to the conventional schemes. Simulation results show that the proposed algorithm can prevent the buffer overflow or underflow and it provides better coding performance.
机译:本文提出了一种用于超低延迟H.264 / AVC编码的帧内速率控制算法。所提出的方案的主要目标是根据每个宏块(MB)的复杂性(或活动)分配适当的比特预算。但是,由于编码器需要在为非常低延迟的视频流应用程序缓冲整个帧之前开始对帧进行编码,因此无法预先知道每个MB的相对复杂度。因此,所提出的算法根据其在空间/时间上相邻的MB的复杂度来预测当前MB的相对复杂度,然后使用所预测的复杂度将适当的比特预算分配给MB。最后,通过比较生成的比特和分配的比特预算来获得每个MB的量化参数,并基于来自前一帧的信息对其进行优化以提高编码性能。即使所需的缓冲区大小仅为每帧平均比特的三分之一左右,以实现非常低的编码延迟,但与传统方案相比,该算法仍可提供可靠的编码性能。仿真结果表明,该算法可以防止缓冲区溢出或下溢,并提供更好的编码性能。

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