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首页> 外文期刊>Journal of Zhejiang university science >Robust optical flow estimation based on brightness correction fields
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Robust optical flow estimation based on brightness correction fields

机译:基于亮度校正场的鲁棒光流估计

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Optical flow estimation is still an important task in computer vision with many interesting applications. However, the results obtained by most of the optical flow techniques are affected by motion discontinuities or illumination changes. In this paper, we introduce a brightness correction field combined with a gradient constancy constraint to reduce the sensibility to brightness changes between images to be estimated. The advantage of this brightness correction field is its simplicity in terms of computational complexity and implementation. By analyzing the deficiencies of the traditional total variation regularization term in weakly textured areas, we also adopt a structure-adaptive regularization based on the robust Huber norm to preserve motion discontinuities. Finally, the proposed energy functional is minimized by solving its corresponding Euler-Lagrange equation in a more effective multi-resolution scheme, which integrates the twice downsampling strategy with a support-weight median filter. Numerous experiments show that our method is more effective and produces more accurate results for optical flow estimation.
机译:在许多有趣的应用中,光流估计仍然是计算机视觉中的重要任务。但是,通过大多数光流技术获得的结果会受到运动不连续性或照明变化的影响。在本文中,我们引入了亮度校正字段并结合了梯度恒定约束,以降低对要估计的图像之间的亮度变化的敏感性。该亮度校正字段的优点在于,它在计算复杂度和实现方面都非常简单。通过分析弱纹理区域中传统总变化正则项的不足,我们还基于鲁棒的Huber范本采用结构自适应正则化以保留运动不连续性。最后,通过在更有效的多分辨率方案中求解其对应的Euler-Lagrange方程,将拟议的能量函数最小化,该方案将两次下采样策略与支持权重中值滤波器集成在一起。许多实验表明,我们的方法更有效,并且可以为光流估计产生更准确的结果。

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