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Error-resilient video coding using long-term memory prediction and feedback channel

机译:使用长期存储器预测和反馈通道的防错视频编码

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摘要

The MC-DCT-based video coding has been generally used for its efficiency and easy implementation, but it is very vulnerable in error-prone environments. In this paper, we address an error-resilient video coding using multiple reference frame, based on the long-term memory motion compensated prediction (LTMP) (IEEE Trans. Circuits Syst. Video Technol. 9 (1) (1999) 70), and an error concealment technique associated with the proposed technique. The rate-distortion optimization of T. Wiegand et al. (1999) is modified by adding dispersion measure of the temporal motion vectors in order to provide the error-resiliency and much improved error concealment performance. Also, the proposed algorithm confines the temporal error propagation using negative acknowledgement in feedback channel, in which both the corrupted area by channel errors and the error-propagated area are estimated and removed from the search region for the motion compensation. Thus, the proposed algorithm yields the similar performance to the forced intra update (FIU) in terms of the PSNR, but avoids the abrupt increase in the bitrate, resulting in more efficient network utilization than the FIU. By the computer simulations, we shall demonstrate that the proposed technique provides an acceptable performance both subjectively and objectively in error-prone environments, as compared with H.263 and LTMP, with or without the feedback messages.
机译:基于MC-DCT的视频编码已被普遍使用,以提高其效率和易于实现,但在容易出错的环境中非常脆弱。在本文中,我们基于长期记忆运动补偿预测(LTMP)(IEEE Trans。Circuits Syst。Video Technol。9(1)(1999)70),解决了使用多个参考帧的防错视频编码的问题,以及与所提出的技术相关的错误隐藏技术。 T. Wiegand等人的速率失真优化。 (1999)通过添加时间运动矢量的离散量度进行了修改,以提供错误恢复能力和大大提高的错误隐藏性能。而且,所提出的算法在反馈信道中使用否定确认来限制时间误差的传播,其中,信道误差的损坏区域和误差传播区域均被估计并从搜索区域中去除以进行运动补偿。因此,所提出的算法在PSNR方面产生了与强制帧内更新(FIU)类似的性能,但避免了比特率的突然增加,从而导致网络利用率高于FIU。通过计算机仿真,我们将证明与H.263和LTMP相比,无论有无反馈消息,所提出的技术在容易出错的环境中在主观和客观上均提供可接受的性能。

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