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TARGETS POSITIONING AND TRACKING IN GROUND SPACE USING MULTIPLE PTZ CAMERAS

机译:使用多个PTZ摄像机在地面空间中进行目标定位和跟踪

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Because of its integral functions of pan, tilt and zoom, the PTZ camera has attracted much interest for applications in surveillance and monitoring. In this study, multiple PTZ cameras and the concept of epipolar geometry are used to automatically position and trace the objects in a three-dimensional (3-D) space. The main objective of the study is to extract 3-D trajectories of moving targets in ground space from video data. The proposed method involves four main stages: (1) the collinearity condition is employed to construct the coordinate transformation between the camera and the ground, (2) the moving objects in the camera frames are detected using the progressive background subtraction method, (3) the epipolar geometry and space intersection techniques are used to calculate the ground coordinate of the moving targets, (4) 3-D trajectories of the moving targets can be constructed from their temporal relationship in the image sequence. The proposed system is tested on various scenarios in an open area. The experimental results reveal that the proposed method can successfully track moving targets and present the 3-D trajectories of moving targets in the ground space.
机译:由于其平移,倾斜和缩放的整体功能,PTZ摄像机已引起监视和监视应用的极大兴趣。在这项研究中,使用了多个PTZ摄像机和对极几何概念来自动定位和跟踪三维(3-D)空间中的对象。该研究的主要目的是从视频数据中提取地面空间中移动目标的3D轨迹。所提出的方法包括四个主要阶段:(1)利用共线性条件构造摄像机与地面之间的坐标变换;(2)使用渐进背景减法检测摄像机帧中的运动物体;(3)极地几何学和空间相交技术被用来计算运动目标的地面坐标,(4)可以根据它们在图像序列中的时间关系来构造运动目标的3D轨迹。所提议的系统在空旷地区的各种场景下进行了测试。实验结果表明,该方法可以成功地跟踪运动目标,并给出了运动目标在地面空间中的3-D轨迹。

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