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Video Surveillance using Distance Maps

机译:使用距离图进行视频监控

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摘要

Human vigilance is limited; hence, automatic motion and distance detection is one of the central issues in video surveillance. Hereby, many aspects are of importance, this paper specially addresses: efficiency, achieving real-time performance, accuracy, and robustness against various noise factors. To obtain fully controlled test environments, an artificial development center for robot navigation is introduced in which several parameters can be set (e.g., number of objects, trajectories and type and amount of noise). In the videos, for each following frame, movement of stationary objects is detected and pixels of moving objects are located from which moving objects are identified in a robust way. An Exact Euclidean Distance Map (E~2DM) is utilized to determine accurately the distances between moving and stationary objects. Together with the determined distances between moving objects and the detected movement of stationary objects, this provides the input for detecting unwanted situations in the scene. Further, each intelligent object (e.g., a robot), is provided with its E~2DM, allowing the object to plan its course of action. Timing results are specified for each program block of the processing chain for 20 different setups. So, the current paper presents extensive, experimentally controlled research on real-time, accurate, and robust motion detection for video surveillance, using E~2DMs, which makes it a unique approach.
机译:人类的警惕性有限;因此,自动运动和距离检测是视频监控的核心问题之一。因此,许多方面都很重要,本文专门针对:效率,实现实时性能,准确性和针对各种噪声因素的鲁棒性。为了获得完全受控的测试环境,引入了一个用于机器人导航的人工开发中心,其中可以设置几个参数(例如,物体的数量,轨迹以及噪声的类型和数量)。在视频中,对于随后的每个帧,检测到静止物体的运动,并定位运动物体的像素,从而以可靠的方式从中识别出运动物体。精确的欧几里得距离图(E〜2DM)用于精确确定运动物体与静止物体之间的距离。连同确定的运动对象之间的距离和检测到的静止对象的运动一起,这提供了用于检测场景中不需要的情况的输入。此外,每个智能对象(例如,机器人)被提供有其E-2DM,从而允许对象计划其动作过程。为处理链的每个程序块指定了20种不同设置的时序结果。因此,当前的论文提出了使用E〜2DM对视频监控进行实时,准确和鲁棒的运动检测的广泛实验控制研究,这使其成为一种独特的方法。

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