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Research on Motion Vector Accuracy in Overcomplete Wavelet-Domain Scalable Video Coding Based on Human Visual System Characteristics

机译:基于人类视觉系统特征的超越小波域可伸缩视频编码运动矢量精度研究

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This paper proposes an accuracy-distortion model for overcomplete wavelet-based scalable motion estimation by exploiting the theory of stationary random process. We first estimate the motion compensation errors in spatial domain due to inaccurate motion vectors, then extend the results to overcomplete wavelet domain, and further derive the errors caused by fraction-pixel motion vectors. Finally, combining with a visibility model of wavelet coefficient errors, this paper proposes a novel algorithm to estimate the motion vector accuracy with which the motion compensation errors will be invisible. Experimental results show that the proposed algorithm is effective in estimating the visually lossless accuracy threshold of motion vectors. The proposed algorithm can be used in scalable coding of motion vectors. Also it can accelerate the motion estimation speed by stopping halfway at the accuracy that will not cause any visible errors.
机译:本文提出了一种通过利用静止随机过程理论来提出超自然基于小波的可伸缩运动估计的精度失真模型。我们首先估计由于运动向量不准确的空间域中的空间域中的运动补偿误差,然后将结果扩展到超越小波域,并进一步推导出由分数像素运动向量引起的误差。最后,结合小波系数误差的可见性模型,本文提出了一种新颖的算法来估计运动补偿误差是不可见的运动矢量精度。实验结果表明,该算法在估计运动向量的视觉无损精度阈值方面是有效的。所提出的算法可以用于运动向量的可伸缩编码。此外,它可以通过以不会引起任何可见误差的准确性停止半途而继,加速运动估计速度。

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