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Fast Motion Estimation Algorithm Based on Complex Wavelet Transform

机译:基于复小波变换的快速运动估计算法

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In this paper, we introduce an algorithm for motion estimation. It combines complex wavelet decomposition and a fast motion estimation method based on affine model. The principle of wavelet transform is to decompose hierarchically the input image into a series of successively lower resolution reference images and detail images which contain the information needed to be reconstructed back to the next higher resolution level. The motion estimation determines the velocity field between two successive images. This phase can be extracted from this measure descriptive information of the sequence. Motion Estimation (ME) is an important part of any video compression system, since it can achieve significant compression by exploiting the temporal redundancy existing in a video sequence. This paper described a method from calculating the optical flow of an image sequence based on complex wavelet transform. It consists to project the optical flow vectors on a basis of complex-valued wavelets. Thus, we add an additional assumption on the shape of the velocity field that we want to find, which is the affinity of the optical flow. The two-dimensional affine motion model is used to formulate the optical flow problem by coarse resolution simultaneously coarse-and-fine, beside the traditional approach by coarse-to-fine, to avoid the error propagation during the decomposition of coarse level to fine level. This method opens the way for a quick and low-cost computing optical flow.
机译:在本文中,我们介绍了一种运动估计算法。它结合了复杂的小波分解和基于仿射模型的快速运动估计方法。小波变换的原理是将输入图像分层分解为一系列连续的较低分辨率的参考图像和细节图像,其中包含需要重构回下一较高分辨率级别的信息。运动估计确定两个连续图像之间的速度场。可以从该度量的序列描述信息中提取此阶段。运动估计(ME)是任何视频压缩系统的重要组成部分,因为它可以通过利用视频序列中存在的时间冗余来实现显着的压缩。本文介绍了一种基于复小波变换的图像序列光流计算方法。它包括在复值小波的基础上投影光流矢量。因此,我们对要查找的速度场的形状添加了一个额外的假设,即光流的亲和力。二维仿射运动模型用于通过粗分辨率同时进行粗细化来表示光流问题,与传统的从粗细化方法一样,避免了从粗级分解为细级时的误差传播。这种方法为快速,低成本的计算光流开辟了道路。

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