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A New Low-Complexity Error Concealment Method for Stereo Video Communication

机译:用于立体视频通信的新低复杂性错误隐藏方法

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The emerging popularity of three dimensional content has instigated the advances of stereo video coding and transmission techniques. According to the existing video compression standards, highly compressed stereo video bit streams are susceptible to transmission errors. As a consequence of the unavoidable spatial, temporal, and inter-view error propagation, the display quality is severely degraded at the receiver side. In this paper, to deal with the whole-frame loss of the right view in H.264-compressed stereo video bitstream transmission, a highly efficient perceptual whole-frame loss of right view error concealment algorithm is proposed with a fast error concealment strategy. Firstly, a fast error concealment strategy is presented, and an efficient image quality Index, gradient magnitude similarity deviation (GMSD) is extended to the concepts of temporal GMSD (TGMSD) and inter-view GMSD (VGMSD), respectively, to evaluate the perceptual quality of stereo image. Then, according to the temporal correlation of video sequences, macroblock (MB) prediction modes of the previous right-view frame are used as the MB prediction mode of the lost frame. Then, MBs in the previous frame of the lost frame are also matched, in both temporal and inter-view domains, to obtain the pixel-based TGMSD and VGMSD maps. Finally, for each MB in the lost right-view frame, its TGMSD and VGMSD values are calculated and compared to obtain the MB prediction mode, after which either motion compensation or disparity compensation can be quickly decided and used for resilience of the lost right-view frame. Experimental results show that compared with traditional error concealment algorithms, the proposed algorithm has superior subjective and objective qualities, and compared with the error concealment algorithms based on structure similarity, its error concealment time is reduced by about 40% with almost same perceptual quality.
机译:三维内容的新兴普及策动的立体视频编码和传输技术的进步。根据现有的视频压缩标准,高度压缩的立体视频比特流容易受到传输错误。作为不可避免的空间,时间,和视图间误差传播的结果,显示质量被严重在接收器侧降低。在本文中,以处理H.264压缩立体声视频比特流传输的右视图的全帧丢失,右视图错误隐藏算法的高效感性的全帧丢失,提出了一个快速的错误隐藏策略。首先,一个快速差错隐蔽策略被呈现,和高效的图像质量指数,梯度大小相似性偏差(GMSD)延伸到颞GMSD(TGMSD)和视图间GMSD(VGMSD)的概念,分别评价感知立体图像的质量。然后,根据视频序列的时间相关性,以前的右视帧的宏块(MB)的预测模式被用作丢失帧的MB预测模式。然后,在丢失帧的前一帧的MB也匹配,在这两个时间和视图间域,以获得基于像素的TGMSD和VGMSD地图。最后,对于在丢失的右视图帧中的每个MB,其TGMSD和VGMSD值计算和比较,以获得MB预测模式,在此之后或者运动补偿或视差补偿可以迅速决定并用于丢失的右的弹性视图帧。实验结果表明,与传统的错误隐藏算法相比,所提出的算法具有优异的主观和客观质量,并且基于相似结构的差错隐藏算法相比,它的错误隐藏时间由约40%降低几乎相同感知质量。

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