基于层分离的反射区域运动估计

Mohamed A. Elgharib, François Pitié, A. Kokaram
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引用次数: 2

摘要

反射区域包含两个相互移动的半透明层。这就产生了两个运动向量。当前的多运动估计要么将通常的亮度一致性假设扩展到两个运动,要么基于傅里叶相移关系。这两种方法都假定在至少三帧内保持恒定运动。因此,它们不能处理由于相机抖动或加速而引起的临时活动运动。本文提出了一种新的多运动估计方法,将正确的运动建模为被检测反射产生最佳层距的运动。提出了一个贝叶斯框架,该框架允许使用由KLT轨迹产生的候选运动和层分离技术进行解决。我们使用新的时间先验,我们的结果显示处理强烈的运动不一致和改进比以前的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Motion Estimation for Regions of Reflections through Layer Separation
Regions of reflections contain two semi-transparent layers moving over each other. This generates two motion vectors per pel. Current multiple motion estimators either extend the usual brightness consistency assumption to two motions or are based on the Fourier phase shift relationship. Both approaches assume constant motion over at least three frames. As a result they can not handle temporally active motion due to camera shake or acceleration. This paper proposes a new approach for multiple motion estimation by modeling the correct motions as the ones generating the best layer separation of the examined reflection. A Bayesian framework is proposed which then admits a solution using candidate motions generated from KLT trajectories and a layer separation technique. We use novel temporal priors and our results show handling of strong motion inconsistencies and improvements over previous work.
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