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An Efficient Motion Vector Recovery and Reconstruction Method for Spatiotemporal Video Error Concealment

机译:时空视频错误掩盖的有效运动矢量恢复与重建方法

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In this article, an efficient spatiotemporal video error concealment (EC) based on motion vector (MV) recovery and a pixel reconstruction (PR) method is proposed. The pixel-based motion vector with partition (PMVP) is modified by using Mahalanobis distance (MD) rather than Euclidean distance (ED) for recovering MVs, as MD uses standard deviation and covariance of available pixels. Further, the MD gives more accuracy for non-square cluster compared to ED. This modified pixel-based motion vector with partition (MPMVP) algorithm is further upgrade by two different strategies. First, by using voting priority of available MVs based on the probabilities of similar directions. Second, by considering separate horizontal and vertical directions of available MVs in voting priority. For pixel reconstruction, modified spiral pixel reconstruction (MSPR) algorithm based on directional edge recovery method using minimum and maximum Mahalanobis distance from available pixels of surrounding MBs is proposed. Mahalanobis distance approach is most optimized similarity measure technique compared to other distance measurement approach to obtained lost motion vectors. These proposed EC techniques are compared with existing EC techniques like, SPR EC using ED, PMVP based EC with ED, and MV Interpolation by Zhou's method for various packet loss rates (PLRs) as 3%, 7%, 16%, 20% and quantization parameters (QPs) as 20, 24, 28, 32, 36. For total average in PLR of 3%, 7%, 16% and 20%, MSPR is having better PSNR compared to PMVP by 2.516, 2.29, 2.06 and 2.02 dB, respectively; and compared to SPR by 0.796, 0.718, 0.643 and 0.631 dB, respectively.
机译:在本文中,提出了一种基于运动矢量(MV)恢复和像素重构(PR)的有效时空视频错误隐藏(EC)方法。通过使用马哈拉诺比斯距离(MD)而不是欧几里德距离(ED)来修改具有分区的基于像素的运动矢量(PMVP),以恢复MV,因为MD使用可用像素的标准偏差和协方差。此外,与ED相比,MD对非正方形簇的准确性更高。该改进的基于像素的带有分区的运动矢量(MPMVP)算法通过两种不同的策略得到了进一步升级。首先,基于相似方向的概率,使用可用MV的投票优先级。其次,通过在投票优先级中考虑可用MV的水平和垂直方向。对于像素重建,提出了一种基于定向边缘恢复方法的改进螺旋像素重建算法,该算法使用距周围MB可用像素的最小和最大马氏距离。与其他距离测量方法相比,马哈拉诺比斯距离方法是最优化的相似性测量技术,可用于获得丢失的运动矢量。这些拟议的EC技术与现有的EC技术进行了比较,例如使用ED的SPR EC,使用ED的基于PMVP的EC以及使用Zhou的方法进行MV插值的各种数据包丢失率(PLR)分别为3%,7%,16%,20%和量化参数(QP)为20、24、28、32、36。对于PLR的总平均值分别为3%,7%,16%和20%,MSPR的PSNR优于PMVP的2.516、2.29、2.06和2.02分贝;与SPR相比分别为0.796、0.718、0.643和0.631 dB。

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