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Joint estimation of forward and backward motion vectors for interpolative prediction of video

机译:用于视频插值预测的前向和后向运动矢量的联合估计

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A low-complexity iterative algorithm is introduced for joint estimation of forward and backward motion vectors in interpolative prediction of video. Starting from the initial values obtained by a commonly-used block matching independent search method, the motion vectors are iteratively refined until a locally optimal solution to the motion estimation problem for interpolative prediction is achieved. Each iteration consists of a series of two similar procedures. First, the backward motion vector is fixed and a new forward motion vector is searched to minimize the interpolation error. Then the forward motion vector is fixed and the backward motion vector is similarly refined by minimizing the interpolation error. This process is repeated until the interpolation error stops decreasing. Computer simulation results demonstrate that with this technique the prediction error in some scenes is significantly reduced.
机译:引入了一种低复杂度的迭代算法,用于联合估计视频的内插预测中的前向运动矢量和后向运动矢量。从通过常用块匹配独立搜索方法获得的初始值开始,迭代地精炼运动矢量,直到获得用于插值预测的运动估计问题的局部最优解。每次迭代由一系列两个相似的过程组成。首先,固定后向运动矢量,并搜索新的前向运动矢量以最小化内插误差。然后固定前向运动矢量,并通过最小化内插误差类似地细化后向运动矢量。重复此过程,直到插值误差停止减小为止。计算机仿真结果表明,使用该技术可以显着减少某些场景中的预测误差。

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