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Rate-Distortion Optimized Motion-Compensated Prediction for Packet Loss Resilient Video Coding

机译:丢包弹性视频编码的速率失真优化运动补偿预测

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摘要

A rate-distortion optimized motion-compensated prediction method for robust video coding is proposed. Contrasting methods from the conventional literature, the proposed approach uses the expected reconstructed distortion after transmission, instead of the displaced frame difference in motion estimation. Initially, the end-to-end reconstructed distortion is estimated through a recursive per-pixel estimation algorithm. Then the total bit rate for motion-compensated encoding is predicted using a suitable rate distortion model. The results are fed into the Lagrangian optimization at the encoder to perform motion estimation. Here, the encoder automatically finds an optimized motion compensated prediction by estimating the best tradeoff between coding efficiency and end-to-end distortion. Finally, rate-distortion optimization is applied again to estimate the macroblock mode. This process uses previously selected optimized motion vectors and their corresponding reference frames. It also considers intraprediction. Extensive computer simulations in lossy channel environments were conducted to assess the performance of the proposed method. Selected results for both single and multiple reference frames settings are described. A comparative evaluation using other conventional techniques from the literature was also conducted. Furthermore, the effects of mismatches between the actual channel packet loss rate and the one assumed at the encoder side have been evaluated and reported in this paper.
机译:提出了一种鲁棒的视频编码率失真优化运动补偿预测方法。与传统文献相反的是,提出的方法使用了传输后预期的重构失真,而不是运动估计中的位移帧差异。最初,端到端重构失真是通过递归的每像素估计算法来估计的。然后,使用合适的速率失真模型预测用于运动补偿编码的总比特率。将结果输入到编码器的拉格朗日优化中,以执行运动估计。在此,编码器通过估算编码效率与端到端失真之间的最佳折衷,自动找到优化的运动补偿预测。最后,再次应用速率失真优化来估计宏块模式。该过程使用先前选择的优化运动矢量及其对应的参考帧。它还考虑了帧内预测。在有损通道环境中进行了广泛的计算机仿真,以评估该方法的性能。描述了单个参考框架和多个参考框架设置的选定结果。还使用文献中的其他常规技术进行了比较评估。此外,本文还评估并报告了实际信道丢包率与编码器端假设的失配之间的不匹配影响。

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