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Video coding with optimal inter/intra-mode switching for packet loss resilience

机译:具有最佳帧间/帧内模式切换的视频编码,可实现丢包恢复

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Resilience to packet loss is a critical requirement in predictive video coding for transmission over packet-switched networks, since the prediction loop propagates errors and causes substantial degradation in video quality. This work proposes an algorithm to optimally estimate the overall distortion of decoder frame reconstruction due to quantization, error propagation, and error concealment. The method recursively computes the total decoder distortion at pixel level precision to accurately account for spatial and temporal error propagation. The accuracy of the estimate is demonstrated via simulation results. The estimate is integrated into a rate-distortion (RD)-based framework for optimal switching between intra-coding and inter-coding modes per macroblock. The cost in computational complexity is modest. The framework is further extended to optimally exploit feedback/acknowledgment information from the receiver/network. Simulation results both with and without a feedback channel demonstrate that precise distortion estimation enables the coder to achieve substantial and consistent gains in PSNR over known state-of-the-art RD- and non-RD-based mode switching methods.
机译:在预测视频编码中通过分组交换网络传输时,对于数据包丢失的恢复能力是至关重要的要求,因为预测环路会传播错误并导致视频质量大幅下降。这项工作提出了一种算法,可以最佳地估计由于量化,错误传播和错误隐藏而导致的解码器帧重构的整体失真。该方法以像素级精度递归计算总的解码器失真,以准确解决空间和时间误差传播。通过仿真结果可以证明估算的准确性。该估计被集成到基于速率失真(RD)的框架中,以在每个宏块的帧内编码和帧间编码模式之间实现最佳切换。计算复杂度的成本适中。该框架被进一步扩展以最佳地利用来自接收器/网络的反馈/确认信息。带有和不带有反馈通道的仿真结果均表明,精确的失真估计使编码器能够在已知的最新RD和非RD模式切换方法上实现PSNR的实质性和一致的增益。

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