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首页> 外文期刊>Circuits and Systems for Video Technology, IEEE Transactions on >Direct Techniques for Optimal Sub-Pixel Motion Accuracy Estimation and Position Prediction
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Direct Techniques for Optimal Sub-Pixel Motion Accuracy Estimation and Position Prediction

机译:最佳亚像素运动精度估计和位置预测的直接技术

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摘要

Direct techniques for the optimal resolution estimation and position prediction of subpel motion vectors (MVs) based on integer-pel MVs are investigated in this paper. Although it is common to determine the optimal MV position by fitting a local error surface using integer-pel MVs, the characteristics of the error surface have not been thoroughly studied in the past. Here, we use an approximate condition number of the Hessian matrix of the error surface to characterize its shape in a local region. By exploiting this shape information, we propose a block-based subpel MV resolution estimation method that allows each block to choose its optimal subpel MV resolution for the optimal rate-distortion (R-D) performance adaptively. Furthermore, we propose two MV position prediction schemes for ill and well-conditioned error surfaces, respectively. All proposed techniques are direct methods, where no iteration is required. Experimental results are given to show the R-D performance of the proposed sub-pel MV resolution estimation and position prediction schemes.
机译:本文研究了基于整数像素MV的子像素运动矢量(MV)最佳分辨率估计和位置预测的直接技术。尽管通常通过使用整数像素MV拟合局部误差表面来确定最佳MV位置,但是过去尚未对误差表面的特性进行深入研究。在这里,我们使用误差表面的Hessian矩阵的近似条件数来表征其在局部区域的形状。通过利用此形状信息,我们提出了一种基于块的子像素MV分辨率估计方法,该方法允许每个块自适应地选择其最佳子像素MV分辨率,以实现最佳的速率失真(R-D)性能。此外,我们针对病态和条件良好的误差表面提出了两种MV位置预测方案。所有提出的技术都是直接方法,不需要迭代。实验结果表明,所提出的子像素MV分辨率估计和位置预测方案的R-D性能。

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