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Stereoscopic video error concealment for missing frame recovery using disparity-based frame difference projection

机译:使用基于视差的帧差异投影来隐藏帧的立体视频错误隐藏

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At low bit-rate video communications, packet loss may easily cause whole-frame loss that, in return, leads to annoying frame drop phenomenon. In this paper, a novel error concealment algorithm is specifically developed for stereoscopic video, called the disparity-based frame difference projection (DFDP), to recover the lost frames at the decoder. The proposed DFDP contains three key components: 1) change detection; 2) disparity estimation; and 3) frame difference projection, which exploits both the intra-view frame difference from one view and interview correlation to estimate the lost frame in another view. The change region computed on the correctly received frame will be used to predict the change region between current missing frame and its previous frame through the estimated disparity, which is the summation of the estimated global disparity and the estimated local disparity. Experimental results have shown that the proposed stereoscopic video error concealment method can effectively restore the lost frames at the decoder and deliver attractive performance, in terms of objective measurement (in peak signal-to-noise ratio) and subjective visual quality.
机译:在低比特率的视频通信中,丢包很容易导致整个帧丢失,从而导致烦人的丢帧现象。本文针对立体视频专门开发了一种新的错误隐藏算法,称为基于视差的帧差异投影(DFDP),以在解码器中恢复丢失的帧。提议的DFDP包含三个关键组件:1)更改检测; 2)视差估计; 3)帧差异投影,利用一个视图的视图内帧差异和采访相关性来估计另一视图中的丢失帧。在正确接收的帧上计算出的变化区域将用于通过估计的视差预测当前丢失帧与其前一帧之间的变化区域,该视差是估计的全局视差和估计的局部视差的总和。实验结果表明,所提出的立体视频错误隐藏方法可以在客观测量(峰值信噪比)和主观视觉质量方面有效地恢复解码器处丢失的帧并提供有吸引力的性能。

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