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首页> 外文期刊>Wireless personal communications: An Internaional Journal >Enhancement of Wireless 3D Video Communication Using Color-Plus-Depth Error Restoration Algorithms and Bayesian Kalman Filtering
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Enhancement of Wireless 3D Video Communication Using Color-Plus-Depth Error Restoration Algorithms and Bayesian Kalman Filtering

机译:使用颜色加深误差恢复算法和贝叶斯卡尔曼滤波的无线3D视频通信增强

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This paper proposes a hybrid of Outer Block Boundary Matching Algorithm and Directional Interpolation Error Concealment Algorithm (DIECA) to recover the Motion Vectors (MVs) and the Disparity Vectors (DVs) of the lost color frames of the transmitted Three-Dimensional Video (3DV). For the lost 3DV depth frames, an Encoder-Independent Decoder-Dependent Depth-Assisted Error Concealment (EIDD-DAEC) algorithm is proposed. It exploits the recovered color MVs and DVs to estimate more additional concealment depth-assisted MVs and DVs. After that, the initially-estimated concealment candidate DVs and MVs are selected from all previously-predicted ones using the DIECA and the Decoder Motion Vector Estimation Algorithm (DMVEA). Finally, the proposed Bayesian Kalman Filtering (BKF) scheme is efficiently employed to filter out the inherent errors inside the selected concealment candidate color-plus-depth MVs and DVs to achieve better 3DV quality. Extensive experimental results on different standardized 3DV sequences demonstrate that the proposed color-plus-depth schemes are more robust against heavy losses and they achieve high 3DV quality performance with an improved average Peak Signal-to-Noise Ratio (PSNR) gain. They objectively and subjectively outperform the state-of-the-art error recovery techniques, especially at severe Packet Loss Rates (PLRs).
机译:本文提出了外部块边界匹配算法和方向插值误差隐藏算法(DIECA)的混合动力来恢复传输的三维视频(3DV)的丢失颜色帧的运动矢量(MV)和视差矢量(DVS) 。对于丢失的3DV深度帧,提出了一种独立于无关的解码器相关的深度辅助误差隐藏(EIDD-DAEC)算法。它利用恢复的颜色MV和DVS来估计更多额外的隐藏深度辅助MV和DVS。之后,使用DIECA和解码器运动向量估计算法(DMVEA)从所有先前预测的隐藏候选DVS和MV选择最初估计的隐藏候选DVS和MV。最后,有效地使用所提出的Bayesian Kalman滤波(BKF)方案来滤除所选隐藏候选色彩加入MV和DVS内的固有误差,以实现更好的3DV质量。不同标准化3DV序列的广泛实验结果表明,所提出的颜色加深度方案对重型损耗更加稳健,并且它们实现了高3DV质量性能,具有改善的平均峰值信噪比(PSNR)增益。他们客观地和主观地优于最先进的错误恢复技术,尤其是在严格的丢包率(PLR)处。

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