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Single Step Optimal Block Matched Motion Estimation with Motion Vectors Having Arbitrary Pixel Precisions

机译:具有任意像素精度的运动矢量的单步最优块匹配运动估计

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Problem statement: This study derives the optimal motion vector with arbitrary pixel precisions in a single step. Approach: A non-linear block matched motion model was proposed. Based on the proposed non-linear block matched motion model, the optimal motion vector which minimizes the mean square error was solved analytically in a single step via a gradient approach. Results: The mean square error based on the proposed method was guaranteed to be lower than or equal to that based on conventional methods. The computational efforts for the proposed method were lower than that of conventional methods particularly when the required pixel precision is higher than or equal to the quarter pixel precisions. Conclusion: As integer pixel locations, half pixel locations and quarter pixel locations are particular locations represented by the proposed model, the mean square error based on the proposed method is guaranteed to be lower than or equal to that based on these conventional methods. Also, as the proposed method does not require searching from coarse pixel locations to fine pixel locations, the computational efforts for the proposed method are lower than that of the conventional methods.
机译:问题陈述:这项研究只需一步就可以得出具有任意像素精度的最佳运动矢量。方法:提出了非线性块匹配运动模型。基于提出的非线性块匹配运动模型,通过梯度方法一步一步地分析了最小化均方误差的最优运动矢量。结果:基于该方法的均方误差可以保证小于或等于传统方法的均方误差。所提出的方法的计算工作量比常规方法要少,特别是当所需的像素精度高于或等于四分之一像素精度时。结论:由于整数像素位置,一半像素位置和四分之一像素位置是所提出模型所代表的特定位置,因此,基于所提出方法的均方误差可以保证小于或等于基于这些常规方法的均方误差。而且,由于所提出的方法不需要从粗像素位置到精细像素位置进行搜索,因此所提出的方法的计算量比传统方法的计算量低。

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