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Rate-distortion analysis of nonlinear quantisers for MPEG video coders: sigmoidal and unimodal quantiser control functions

机译:MPEG视频编码器的非线性量化器的速率失真分析:S型和单峰量化器控制功能

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摘要

Quantisation is employed in MPEG video coders as a video rate control scheme to regulate the data rate of the compressed video bit stream entering the transmission buffer. For constant bit rate applications, the quantiser has a crucial effect on the video data rate and video quality. It has been a challenging task to optimise the quantiser step size for both bit rate and quality since they are mutually exclusive parameters, as defined by rate-distortion theory. The quantiser step size is generally determined by a linear relationship with respect to the buffer occupancy. Two nonlinear quantiser control functions are investigated, sigmoidal and unimodal, which achieve superior video rate control performance while maintaining similar video quality to the linear one. These two functions are analysed in the framework of rate-distortion theory. Their performance for video rate fluctuation has also been analysed. Encoding results for the two functions are compared to the MPEG2 TM5 evaluation model.
机译:在MPEG视频编码器中采用量化作为视频速率控制方案,以调节进入传输缓冲区的压缩视频比特流的数据速率。对于恒定比特率应用,量化器对视频数据速率和视频质量具有至关重要的影响。由于比特率和质量是量化参数互斥的互斥参数,因此优化比特率和质量的量化步长一直是一项艰巨的任务。量化器步长通常由相对于缓冲区占用率的线性关系确定。研究了两个非线性量化器控制功能(S型和单峰),它们在保持与线性视频质量相似的视频质量的同时,实现了出色的视频速率控制性能。在速率失真理论的框架内分析了这两个函数。还分析了它们在视频速率波动方面的表现。将这两个功能的编码结果与MPEG2 TM5评估模型进行比较。

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