首页> 外文会议>MICAI 2010;Mexican international conference on artificial intelligence >Robust Spatial Regularization and Velocity Layer Separation for Optical Flow Computation on Transparent Sequences
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Robust Spatial Regularization and Velocity Layer Separation for Optical Flow Computation on Transparent Sequences

机译:用于透明序列上光流计算的鲁棒空间正则化和速度层分离

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Motion estimation in sequences with transparencies is an important problem in robotics and medical imaging applications. In this work we propose two procedures to improve the transparent optical flow computation. We build from a variational approach for estimating multivalued velocity fields in transparent sequences. That method estimates multi-valued velocity fields which are not necessarily piecewise constant on a layer -each layer can evolve according to a non-parametric optical flow. First we introduce a robust statistical spatial interaction weight which allows to segment the multi-motion field. As result, our method is capable to recover the object's shape and the velocity field for each object with high accuracy. Second, we develop a procedure to separate the component layers of rigid objects from a transparent sequence. Such a separation is possible because of the high accuracy of the object's shape recovered from our transparent optical flow computation. Our proposal is robust to the presence of several objects in the same sequence as well as different velocities for the same object along the sequence. We show how our approach outperforms existing methods and we illustrate its capabilities on challenging sequences.
机译:具有透明度的序列中的运动估计是机器人技术和医学成像应用中的重要问题。在这项工作中,我们提出了两种改进透明光流计算的程序。我们从变分方法构建,用于估计透明序列中的多值速度场。该方法估计在一个层上不一定分段恒定的多值速度场-每个层都可以根据非参数光流进行演化。首先,我们介绍了一种鲁棒的统计空间交互权重,该权重可以分割多运动场。结果,我们的方法能够以高精度恢复每个物体的形状和速度场。其次,我们开发了一种程序,可以从透明序列中分离出刚性物体的组成层。这种分离是可能的,因为从我们的透明光流计算中可以高精度地恢复出物体的形状。我们的建议对于存在相同序列的多个对象以及沿该序列的同一对象的不同速度具有鲁棒性。我们展示了我们的方法如何胜过现有方法,并说明了其在具有挑战性的序列上的功能。

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