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Iterative least squares and compression based estimations for afour-parameter linear global motion model and global motion compensation

机译:四参数线性全局运动模型和全局运动补偿的基于迭代最小二乘和压缩的估计

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摘要

In this paper, a four-parameter model for global motion in image sequences is proposed. The model is generalized and can accommodate global object motions besides the motions due to the camera movements. Only the pan and the zoom global motions are considered because of their relatively more frequent occurrences in real video sequences. Besides the traditional least-squares estimation scheme, two more estimation schemes based on the minimization of the motion field bit rate and the global prediction error energy are proposed. Among the three estimation schemes, the iterative least-squares estimation is observed to be the best because of the least computational complexity, accuracy of the estimated parameters, and similar performance as with the other schemes. Four global motion compensation schemes including the existing pixel-based forward compensation are proposed. It is observed that backward compensation schemes perform similarly to the corresponding forward schemes except for having one frame delay degradation. The pixel based forward compensation is observed to have the best performance. A new motion vector coding scheme is proposed which has similar performance as the two-dimensional entropy coding but needs much less computation. Using the proposed coding scheme with the pixel-based forward compensation, we obtain 61.85% savings in motion field bit rate over the conventional motion compensation for the Tennis sequence
机译:本文提出了一种用于图像序列全局运动的四参数模型。该模型是通用的,除了相机运动引起的运动外,还可以容纳全局物体运动。仅考虑平移和缩放全局运动,因为它们在实际视频序列中的出现频率相对较高。除了传统的最小二乘估计方案外,还提出了两种基于运动场比特率和全局预测误差能量最小化的估计方案。在这三种估计方案中,由于最小的计算复杂度,估计参数的准确性以及与其他方案相似的性能,迭代最小二乘估计被认为是最好的。提出了四种全局运动补偿方案,包括现有的基于像素的前向补偿。可以看出,后向补偿方案除具有一帧时延下降外,其性能与相应的前向方案相似。观察到基于像素的前向补偿具有最佳性能。提出了一种新的运动矢量编码方案,该方案具有与二维熵编码相似的性能,但计算量却少得多。使用提出的编码方案和基于像素的前向补偿,与传统的网球序列运动补偿相比,我们在运动场比特率方面节省了61.85%

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