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Passive Error Concealment for Wavelet-Coded I-Frames With an Inhomogeneous Gauss–Markov Random Field Model

机译:具有非均匀高斯-马尔可夫随机场模型的小波编码I帧的被动误差掩盖

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In video communication over lossy packet networks (e.g., the Internet), packet loss errors can severely damage the transmitted video. The damaged video can largely be repaired with passive error concealment, where neighboring information is used to estimate missing information. We address the problem of passive error concealment for wavelet coded data with dispersive packetization. The reported techniques of this kind have many problems and usually fail in the reconstruction of high-frequency content. This paper presents a novel locally adaptive error concealment method for subband coded I-frames based on an inhomogeneous Gaussian Markov random field model. We estimate the parameters of this model from a local context of each lost coefficient, and we interpolate the lost coefficients accordingly. The results demonstrate a significant improvement over the reported related methods both in terms of objective performance measures and visually. The biggest improvement of the proposed method compared to the state-of-the-art in the field is the correct reconstruction of high-frequency information such as textures and edges.
机译:在有损分组网络(例如,互联网)上的视频通信中,分组丢失错误会严重损坏所传输的视频。损坏的视频可以通过被动错误掩盖来修复,在这种情况下,相邻信息可用于估计丢失的信息。我们解决了具有色散打包的小波编码数据的被动错误隐藏的问题。所报道的这种技术存在许多问题,并且通常在重构高频内容时失败。本文提出了一种基于非均匀高斯马尔可夫随机场模型的子带编码I帧局部自适应误差隐藏方法。我们从每个丢失系数的局部上下文估计该模型的参数,并相应地对丢失系数进行插值。结果表明,相对于报告的相关方法,无论是在客观绩效指标上还是在视觉上都得到了显着改善。与本领域中的最新技术相比,该方法的最大改进是对纹理和边缘等高频信息的正确重建。

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