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A Stochastic Framework for Rate-Distortion Optimized Video Coding Over Error-Prone Networks

机译:误差帧网络上用于速率失真优化视频编码的随机框架

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This paper proposes a complete stochastic framework for RD optimal encoder design for video over error-prone networks, which applies to any motion-compensated predictive video codec. The distortion measure has been taken as the mean square error over an ensemble of channels given an estimate of the instantaneous packet loss probability. We show that 1) the optimal motion compensated prediction, in the MSE sense, requires computation of the expected value of the reference frames, and 2) calculation of the MSE (distortion measure) requires computation of the second moment of the reference frames. We propose a recursive procedure for the computation of both the expected value and second moment of the reference frames, which are together called the stochastic frame buffer. Furthermore, we propose a stochastic RD optimization method for selection of the optimal macroblock mode and motion vectors given the instantaneous packet loss probability. If available, channel feedback can also be incorporated into the proposed stochastic framework. However, the proposed framework does not require a feedback channel to exist, and when it exists, it does not have to be lossless. In the absence of any packet losses, the proposed stochastic framework reduces to the well-known deterministic RD optimization procedures. One possible application of the optimal stochastic framework would be for multicast streaming to an ensemble of receivers. Experimental results indicate that the proposed framework outperforms other available error tracking and control schemes
机译:本文针对易错网络上的视频,为RD最优编码器设计提出了一个完整的随机框架,该框架适用于任何运动补偿的预测视频编解码器。在给出瞬时分组丢失概率的估计的情况下,已经将失真度量作为整个信道上的均方误差。我们表明1)在MSE意义上,最佳运动补偿预测需要计算参考帧的期望值,以及2)MSE(失真度)的计算需要计算参考帧的第二矩。我们提出了一个递归过程,用于计算参考帧的期望值和第二时刻,它们一起被称为随机帧缓冲区。此外,我们提出了一种随机RD优化方法,用于在给出瞬时丢包概率的情况下选择最佳宏块模式和运动矢量。如果可用,也可以将信道反馈合并到建议的随机框架中。但是,提出的框架不需要存在反馈渠道,并且在存在反馈渠道时,它不一定是无损的。在没有任何数据包丢失的情况下,提出的随机框架简化为众所周知的确定性RD优化过程。最佳随机框架的一种可能应用是将组播流传输到一组接收器。实验结果表明,所提出的框架优于其他可用的错误跟踪和控制方案

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