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Robust transmission of video sequence using double-vector motioncompensation

机译:使用双矢量运动补偿实现视频序列的稳健传输

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This paper proposes a motion compensation (MC) algorithm for robust transmission of video sequence, called the double-vector motion compensation (DMC). In the DMC, each block B in a frame is predicted from the weighted superposition of two blocks in the previous two frames, using two motion vectors. Therefore, when one of these two blocks is corrupted during the transmission, the decoder can efficiently suppress its error propagation to the subsequent frames, by predicting B only from the other block. It is shown by analysis that the DMC algorithm yields significantly lower error bounds for the subsequent frames than the conventional MC technique. Furthermore, the DMC algorithm can be combined with an effective concealment algorithm, which is capable of recovering very severe transmission errors, such as loss of an entire frame. A complete video coder, based on the DMC, is implemented by modifying the MC syntax of the H.263 standard and tested intensively in a realistic error prone environment. It is shown that the proposed algorithm provides much better objective and subjective performances than the H.263 coder in the error-prone environment
机译:本文提出了一种用于视频序列鲁棒传输的运动补偿(MC)算法,称为双矢量运动补偿(DMC)。在DMC中,使用两个运动矢量根据前两个帧中两个块的加权叠加来预测帧中的每个块B。因此,当在传输期间这两个块之一被破坏时,解码器可以通过仅从另一块预测B来有效地抑制其向后续帧的错误传播。分析表明,与传统的MC技术相比,DMC算法对于后续帧产生的错误边界明显更低。此外,DMC算法可以与有效的隐藏算法结合使用,该算法可以恢复非常严重的传输错误,例如整个帧的丢失。通过修改H.263标准的MC语法,可以实现基于DMC的完整视频编码器,并在容易出错的实际环境中进行严格的测试。结果表明,在易错环境下,该算法比H.263编码器具有更好的主观和主观性能。

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