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Hybrid frame-recursive block-based distortion estimation model for wireless video transmission

机译:基于混合帧递归块的无线视频传输的失真估计模型

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In wireless environments, video quality can be severely degraded due to channel errors. Improving error robustness towards the impact of packet loss in error-prone network is considered as a critical concern in wireless video networking research. Data partitioning (DP) is an efficient error-resilient tool in video codec that is capable of reducing the effect of transmission errors by reorganizing the coded video bitstream into different partitions with different levels of importance. Significant video performance improvement can be achieved if DP is jointly optimized with unequal error protection (UEP). This paper proposes a fast and accurate frame-recursive block-based distortion estimation model for the DP tool in H.264.AVC. The accuracy of our model comes from appropriately approximating the error-concealment cross-correlation term (which is neglected in earlier work in order to reduce computation burden) as a function of the first moment of decoded pixels.Without increasing computation complexity, our proposed distortion model can be applied to both fixed and variable block size intra-prediction and motion compensation. Extensive simulation results are presented to show the accuracy of our estimation algorithm.
机译:在无线环境中,由于信道错误,视频质量可能会严重降级。改善误差稳健性对易于网络错误易受网络的影响的影响被认为是无线视频网络研究中的关键问题。数据分区(DP)是视频编解码器中的有效误差弹性工具,其能够通过重新组织编码的视频比特流入具有不同程度的重要性的不同分区来降低传输错误的效果。如果DP与不等误差保护(UEP)共同优化,则可以实现显着的视频性能改进。本文为H.264.AVC中的DP工具提出了一种基于快速准确的基于帧递归块的失真估计模型。我们模型的准确性来自适当地逼近错误隐藏互相关项(在早期的工作中忽略了忽略,以减少计算负担)作为解码像素的第一矩的函数。推出计算复杂性,我们提出的失真模型可以应用于固定和可变块大小帧内预测和运动补偿。提出了广泛的仿真结果以显示我们估计算法的准确性。

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