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GRADIENT BASED IMAGE MOTION ESTIMATION WITHOUT COMPUTING GRADIENTS

机译:不基于梯度的基于梯度的图像运动估计

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Computing an optical how field using the classical image motion constraint equation I(x)u+I(y)v+I-t-0, is difficult owing to the aperture problem and the need to compute the image intensity derivatives via numerical differentiation-an extremely unstable operation. We integrate the above constraint equation over a significant spatio-temporal support and use Gauss's Divergence theorem to replace the volume integrals by surface integrals, thereby eliminating the intensity derivatives and numerical differentiation. We tackle the aperture problem by fitting an affine flow field model to a small space-time window. Using this affine model our new integral motion constraint approach leads to a robust and accurate algorithm to compute the optical flow field. Extensive experimentation confirms that the algorithm is indeed robust and accurate. [References: 27]
机译:由于孔径问题以及需要通过数值微分计算图像强度导数的问题,使用经典图像运动约束方程I(x)u + I(y)v + It-0计算光学操作域是困难的运行不稳定。我们将上述约束方程式在重要的时空支持下进行积分,并使用高斯的发散定理用表面积分代替体积积分,从而消除了强度导数和数值微分。我们通过将仿射流场模型拟合到较小的时空窗口来解决孔径问题。使用这种仿射模型,我们新的积分运动约束方法导致了一种鲁棒且准确的算法来计算光流场。大量的实验证实了该算法的确可靠且准确。 [参考:27]

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