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Image-Assisted Total Station Camera Mounting Error Correction Model and Analysis

机译:图像辅助全站式摄像机安装纠错模型和分析

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摘要

Image-assisted total stations (IATSs) have extensive application prospects in astronomic surveys, deformation monitoring, precision engineering surveying, and topographic mapping. During image processing of data, the angle measured by the total station must be analyzed together with the image information, and therefore, camera system errors must be considered in addition to the systematic errors of the total station. Systematic errors of total stations can be eliminated or reduced by calibration. However, there is a lack of effective methods for the correction of the camera system errors. We analyzed the mounting error sources of the camera systems of IATS, constructed a model for the conversion between pixel coordinates and the angle measurements of the total station as well as an error correction model, and analyzed the effects of system mounting errors on the angle measurements. We also determined the effects of camera system mounting errors on the angle measurements using celestial objects. The results show that if both the horizontal and vertical components of the coaxiality error are assumed to be 2 '' and the elevation angle is 50 degrees, the errors of the horizontal and vertical angles can reach 3 center dot 0 '' and 2 center dot 0 '', respectively. These errors must be corrected for on-ground precision measurements of the astronomical longitude, latitude, and orientation, which require a precision of 0.1 ''.
机译:图像辅助总站(IATS)在天文调查,变形监测,精密工程测量和地形映射中具有广泛的应用前景。在数据的图像处理期间,必须与图像信息分析通过总站测量的角度,因此除了总站的系统错误之外,必须考虑相机系统错误。通过校准可以消除或减少总站的系统误差。然而,缺乏有效的方法来校正相机系统错误。我们分析了IAT的摄像机系统的安装误差源,构造了像素坐标之间转换的模型,以及总站的角度测量以及纠错模型,并分析了系统安装误差对角度测量的影响。我们还确定了使用天体对象在角度测量上的相机系统安装误差的影响。结果表明,如果同轴误差的水平和垂直分量都假定为2''并且仰角是50度,水平和垂直角度的误差可以达到3中心点0''和2中心点0''分别。必须纠正这些错误,以获得天文经度,纬度和方向的地面精度测量,这需要精确度为0.1''。

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