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Optical snow

机译:光学雪

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摘要

Classical methods for measuring image motion by computer have concentrated on the cases of optical flow in which the motion field is continuous, or layered motion in which the motion field is piecewise continuous. Here we introduce a third natural category which we call optical snow. Optical snow arises in many natural situations such as camera motion in a highly cluttered 3-D scene, or a passive observer watching a snowfall. Optical snow yields dense motion parallax with depth discontinuities occurring near all image points. As such, constraints on smoothness or even smoothness in layers do not apply. In the Fourier domain, optical snow yields a one-parameter family of planes which we call a bowtie. We present a method for measuring the parameters of the direction and range of speeds of the motion for the special case of parallel optical snow. We demonstrate the effectiveness of the method for both synthetic and real image sequences. [References: 41]
机译:通过计算机测量图像运动的经典方法集中于运动场是连续的光流或运动场是分段连续的分层运动的情况。在这里,我们介绍第三种自然类别,我们称之为光学雪。在许多自然情况下都会出现光学降雪,例如在高度混乱的3-D场景中发生摄像机运动,或者被动观察者观看降雪。光学雪产生密集的运动视差,在所有像点附近出现深度不连续。这样,对层中的平滑度或什至平滑度的约束不适用。在傅立叶域中,光学降雪产生了一个单参数飞机平面,我们称其为领结。对于平行光学积雪的特殊情况,我们提出了一种测量运动方向和速度范围参数的方法。我们证明了该方法对合成和真实图像序列的有效性。 [参考:41]

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