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A Semitransparency-Based Optical-Flow Method With a Point Trajectory Model for Particle-Like Video

机译:基于半透明的具有点轨迹模型的粒子流视频流方法

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This paper proposes a new semitransparency-based optical-flow model with a point trajectory (PT) model for particle-like video. Previous optical-flow models have used ranging from image brightness constancy to image brightness change models as constraints. However, two important issues remain unsolved. The first is how to track/match a semitransparent object with a very large displacement between frames. Such moving objects with different shapes and sizes in an outdoor scene move against a complicated background. Second, due to semitransparency, the image intensity between frames can also violate a previous image brightness-based optical-flow model. Thus, we propose a two-step optimization for the optical-flow estimation model for a moving semitransparent object, i.e., particle. In the first step, a rough optical flow between particles is estimated by a new alpha constancy constraint that is based on an image generation model of semitransparency. In the second step, the optical flow of a particle with a continuous trajectory in a definite temporal interval based on a PT model can be refined. Many experiments using various falling-snow and foggy scenes with multiple moving vehicles show the significant improvement of the optical flow compared with a previous optical-flow model.
机译:本文提出了一种新的基于半透明的光流模型,该模型具有用于点状视频的点轨迹(PT)模型。先前的光流模型已经使用从图像亮度恒定性到图像亮度变化模型的范围作为约束。但是,两个重要问题仍未解决。第一个是如何跟踪/匹配在帧之间有很大位移的半透明对象。这种在室外场景中具有不同形状和大小的移动物体在复杂的背景下移动。其次,由于半透明,帧之间的图像强度也可能违反先前基于图像亮度的光流模型。因此,我们提出了针对移动半透明物体(即粒子)的光流估计模型的两步优化。第一步,通过基于半透明图像生成模型的新的alpha恒定性约束,估计粒子之间的粗糙光流。在第二步骤中,可以基于PT模型细化具有确定的时间间隔的连续轨迹的粒子的光流。与多个先前的光流模型相比,使用各种降雪和有雾场景且多个移动车辆进行的许多实验表明,光流显着改善。

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