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A trajectory-based computational model for optical flow estimation

机译:基于轨迹的光流估计计算模型

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A new computational model for optical flow estimation is proposed. The proposed model utilizes trajectory information present in a multiframe spatio-temporal volume. Optical flow estimation is formulated as an optimization problem. The solution to this optimization problem yields a velocity field corresponding to smoothest and shortest trajectories of constant intensity points within the spatio-temporal volume. The approach is motivated by principles of inertia of motion and least action in physics and vision psychology. An analogy between a trajectory and a "thin wire" is discussed. A simple mechanism for handling trajectory discontinuities is also incorporated. The optimization problem is solved by stochastic relaxation techniques. Some experimental results and performance comparisons with two existing optical flow estimation techniques are presented to demonstrate the effectiveness of the proposed approach.
机译:提出了一种新的光流估计计算模型。所提出的模型利用了多帧时空体积中存在的轨迹信息。将光流估计公式化为优化问题。该优化问题的解决方案产生了一个速度场,该速度场对应于时空体积内恒定强度点的最平滑和最短轨迹。该方法是受物理学和视觉心理学中运动惯性和最小作用原理的激励。讨论了轨迹和“细线”之间的类比。还引入了用于处理轨迹不连续性的简单机制。通过随机松弛技术解决了优化问题。提出了一些实验结果和与两种现有的光流估计技术的性能比较,以证明该方法的有效性。

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