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Automation of Tracking Trajectories in a Crowded Situation

机译:拥挤情况下的跟踪轨迹自动化

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摘要

Studies on pedestrians using microscopic simulation require large amounts of trajectory data from real-world pedestrian crowds. The collection of such data, if done manually, involves tremendous efforts and is very time-consuming. Although many studies have asserted the possibility of automating this task using video cam eras, we have found that only a few have demonstrated good performance in very crowded situations or from a top-angled view scene. This paper deals with tracking pedestrian crowd under heavy occlusion and from an angular scene using only a sin gle non-stereo video camera. Our automated tracking system consists of three mod ules that are performed sequentially. The first module detects moving objects as blobs. The second module computes feature values from the blob information in order to generate what we call a possibility matrix. The third module is a tracking system, which employs a Bayesian update of the probability tree derived from the possibility matrix and from the detection of each pedestrian, in order to track the next position of the pedestrian. The result of such tracking is a database of pedes trian trajectories over time and space. With certain prior information, we show that the system is able to track a large number of people under occlusion and clutter scene.
机译:使用微观模拟对行人进行研究需要来自现实世界中行人的大量轨迹数据。如果手动进行此类数据收集,则需要付出巨大的努力并且非常耗时。尽管许多研究断言可以使用视频摄录机实现此任务的自动化,但我们发现只有极少数的人在非常拥挤的情况下或从大视角观看时表现出良好的性能。本文仅使用单台非立体摄像机处理在重度遮挡下和从有角度的场景中跟踪行人的问题。我们的自动跟踪系统由依次执行的三个模块组成。第一个模块将移动物体检测为斑点。第二个模块从斑点信息中计算特征值,以生成所谓的可能性矩阵。第三模块是跟踪系统,其采用从可能性矩阵和每个行人的检测得出的概率树的贝叶斯更新,以便跟踪行人的下一个位置。这种跟踪的结果是一个随时间和空间分布的人行三重轨迹的数据库。借助某些先验信息,我们证明了该系统能够跟踪处于遮挡和混乱场景下的大量人员。

著录项

  • 来源
    《Fire Technology》 |2012年第1期|p.73-90|共18页
  • 作者单位

    Ateneo De Manila University, Katipunan Avenue, Loyola Height, Quezon City, Philippines;

    Ateneo De Manila University, Katipunan Avenue, Loyola Height, Quezon City, Philippines;

    Ateneo De Manila University, Katipunan Avenue, Loyola Height, Quezon City, Philippines;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    video tracking; microscopic pedestrian; occlusion;

    机译:视频跟踪;微观行人咬合;
  • 入库时间 2022-08-18 00:12:52

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