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Fully Automatic Multi-Object Articulated Motion Tracking

机译:全自动多对象铰接式运动跟踪

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Fully automatic tracking of articulated motion in real-time with a monocular RGB camera is a challenging problem which is essential for many virtual reality (VR) and human-computer interaction applications. In this paper, we present an algorithm for multiple articulated objects tracking based on monocular RGB image sequence. Our algorithm can be directly employed in practical applications as it is fully automatic, real-time, and temporally stable. It consists of the following stages: dynamic objects counting, objects specific 3D skeletons generation, initial 3D poses estimation, and 3D skeleton fitting which fits each 3D skeleton to the corresponding 2D body-parts locations. In the skeleton fitting stage, the 3D pose of every object is estimated by maximizing an objective function that combines a skeleton fitting term with motion and pose priors. To illustrate the importance of our algorithm for practical applications, we present competitive results for real-time tracking of multiple humans. Our algorithm detects objects that enter or leave the scene, and dynamically generates or deletes their 3D skeletons. This makes our monocular RGB method optimal for real-time applications. We show that our algorithm is applicable for tracking multiple objects in outdoor scenes, community videos, and low-quality videos captured with mobile-phone cameras.
机译:用单眼RGB相机实时地进行铰接运动的全自动跟踪是一个具有挑战性的问题,这对于许多虚拟现实(VR)和人机交互应用是必不可少的。在本文中,我们介绍了一种基于单目一象RGB图像序列的多个铰接对象跟踪算法。我们的算法可以直接在实际应用中使用,因为它是全自动,实时和时间稳定的。它由以下阶段组成:动态对象计数,对象特定的3D骨架生成,初始3D姿势估计,以及适合每个3D骨架的3D骨架拟合到相应的2D身体部位位置。在骨架拟合阶段,通过最大化将骨架拟合术语与运动和姿势前沿的目标函数最大化来估计每个对象的3D姿势。为了说明我们对实际应用算法的重要性,我们为多个人类的实时跟踪提供了竞争力。我们的算法检测进入或离开场景的对象,并动态生成或删除其3D骨架。这使得我们的单眼RGB方法对于实时应用最佳。我们表明,我们的算法适用于在室外场景,社区视频和使用移动电话摄像机捕获的低质量视频中跟踪多个对象。

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