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Constrained bit-rate control for very low bit-rate streaming-videoapplications

机译:用于非常低比特率的流视频应用的受限比特率控制

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We propose a low-complexity frame-layer bit-rate control algorithm for very low bit-rate streaming-video applications with causal one-pass processing. Rate control is achieved by jointly adapting the frame rate and quantization step-size. Constraint coding is introduced, which forces the encoder to operate within a subset of operating points on a 2-D grid. The control parameters are also constrained to change in a gradual fashion, allowing bits to be saved in easy scenes so that more bits can be used for difficult scenes. A simple scene-change detector is used to insert intra frames at scene-change boundaries. The proposed algorithm is implemented in H.263 and is compared with the case of fixed control parameters and a conventional off-line bit-rate control based on adapting the quantization step-size. It is shown that the proposed algorithm codes more frames over a given time interval while achieving average PSNR gains over 1 dB and reducing bit-rate fluctuations. Results are confirmed by subjective tests, which show that our bit-rate control consistently provides improved visual quality
机译:我们针对具有因果一遍处理的极低比特率流视频应用提出了一种低复杂度的帧层比特率控制算法。速率控制是通过共同调整帧速率和量化步长来实现的。引入了约束编码,这迫使编码器在2-D网格上的操作点的子集内操作。控制参数也受约束以逐步的方式更改,从而允许将位保存在容易的场景中,以便更多的位可用于困难的场景。一个简单的场景变化检测器用于在场景变化边界处插入内部帧。所提出的算法在H.263中实现,并与固定控制参数和基于自适应量化步长的常规离线比特率控制的情况进行了比较。结果表明,所提出的算法在给定的时间间隔内对更多的帧进行编码,同时获得超过1 dB的平均PSNR增益并减少比特率波动。结果通过主观测试得到证实,这表明我们的比特率控制始终如一地提供了改善的视觉质量

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