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Integration of Frequency and Space for Multiple Motion Estimation and Shape-Independent Object Segmentation

机译:频率和空间的集成,用于多运动估计和形状独立的对象分割

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A video containing multiple objects undergoing independent translational and rotational motions is analyzed through a combination of spatial- and frequency-domain representations. The Fourier transform of the sequence is used to estimate the multiple translations and rotations in a computationally efficient manner, which is also robust to local inaccuracies and global illumination changes. A novel algorithm is presented for the simultaneous extraction of all objects undergoing translation and the background via a least squares technique that takes place entirely in the Fourier domain. Spatial information is combined with the frequency domain object extraction results, to further refine them. For the case of rotational or combined, rotational and translational motions, the moving objects are segmented using purely spatial information. We show that the combined analysis takes advantage of the strengths of both representations, by providing reliable and computationally efficient motion estimates and object segmentation. The proposed algorithm is shown to be robust to local noise and occlusion, because of its global nature. Experiments are performed on synthetic and real video sequences to demonstrate the capabilities of our approach.
机译:通过结合空间域和频域表示,可以分析包含多个对象的视频,这些对象经历了独立的平移和旋转运动。序列的傅立叶变换用于以计算有效的方式估计多个平移和旋转,这对于局部误差和全局光照变化也很健壮。提出了一种新颖的算法,可通过完全在傅立叶域中进行的最小二乘技术同时提取所有正在翻译的对象和背景。空间信息与频域对象提取结果相结合,以进一步完善它们。对于旋转或组合,旋转和平移运动,仅使用空间信息对运动对象进行分割。我们展示了组合分析通过提供可靠且计算效率高的运动估计和对象分割,利用了两种表示的优势。由于该算法的全局性,因此显示出对局部噪声和遮挡具有鲁棒性。在合成和真实视频序列上进行了实验,以证明我们方法的功能。

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