Design of space coordinate measuring system based on dynamic target tracking

Zhou Hu, Sun Yanqiu, Huang Hua
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Abstract

A measurement system based on dynamic target tracking with laser-electronic theodolites is represented in order to realize automatic spatial measurement for moving targets in large scale. The structure of the measurement system which consists of external scanning equipment and laser-electronic theodolite is proposed. The measurement model of the video camera is established by coordinate system transformation from axis to axis subsequently. Then guidance method for the theodolites using the optical axis strategy is discussed. As the track of moving targets such as industrial robot is estimated with extended Kalman filtering process, the measuring process can be realized after the targets located in the very field of the camera at last. The experimental data show that automation level and accuracy for dynamic measurement could be improved effectively with the system, no matter which style of the moving target is to be measured.
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基于动态目标跟踪的空间坐标测量系统设计
为了实现大尺度运动目标的自动空间测量,提出了一种基于激光电子经纬仪的动态目标跟踪测量系统。提出了由外接扫描设备和激光电子经纬仪组成的测量系统结构。然后通过坐标轴之间的坐标系变换建立摄像机的测量模型。然后讨论了利用光轴策略对经纬仪进行制导的方法。采用扩展卡尔曼滤波方法对工业机器人等运动目标的轨迹进行估计,最终将目标定位到摄像机的位置后实现测量。实验数据表明,无论对何种类型的运动目标进行动态测量,该系统都能有效地提高动态测量的自动化水平和精度。
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