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Motion estimation based on the direction of intensity gradient

机译:基于强度梯度方向的运动估计

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摘要

The optical flow constraint (OFC) equation has been extensively studied in computer vision to estimate motion from image sequences. Traditionally the OFC relies on spatio-temporal brightness variations caused by motion. However, many other features are in principle appropriate, including gradient directions of the image intensity. Given gradient directions are more tolerant to changes in lighting, they seem to be an adequate choice for computing optical flows. Their applicability in the OFC is, however, not straightforward as the gradient direction is independent of the gradient magnitude, and is not defined in homogeneous areas. To palliate to these difficulties, a form of OFC equation based on probability distributions of gradient directions is proposed. The performance of the approach is assessed by experiments realized on synthetic and real world images.
机译:光流约束(OFC)方程已在计算机视觉中进行了广泛研究,以根据图像序列估算运动。传统上,OFC依赖于运动引起的时空亮度变化。然而,原则上,许多其他特征是适当的,包括图像强度的梯度方向。给定梯度方向更能适应光照变化,它们似乎是计算光流的适当选择。但是,它们在OFC中的适用性并不简单,因为梯度方向与梯度大小无关,并且没有在均匀区域中定义。为了克服这些困难,提出了一种基于梯度方向概率分布的OFC方程形式。该方法的性能通过在合成和真实世界图像上实现的实验进行评估。

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