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Application of Optimal Ellipsoid Fitting for Curvature Change Tracking in Main Reflector of Complex Antenna Structures

机译:最优椭球拟合在曲率变化跟踪中在复杂天线结构主反射镜中的应用

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摘要

In this study, a curvature change tracking program was developed to evaluate curvature changes in the main reflector of a very long baseline interferometry (VLBI) antenna structure. The data from the geometric model that was developed by fitting the main reflector into a three-dimensional (3D) ellipsoid model were used as the fundamental data for the tracking program. The 3D ellipsoid fitting model was established using the 3D position coordinates of the feature points on the reflector surface extracted through nontarget-based close-range photogrammetry. To enhance the fitting accuracy of the 3D ellipsoid model, the optimal parameters were calculated by minimizing the residuals between the conjugate points and the ellipsoid fitting model and by removing outliers. As a result, it was statistically confirmed that the fitting accuracy of the ellipsoid model was improved. The improved ellipsoid model was incorporated into the curvature change tracking program. The developed program will be used to evaluate the structural stability of the main reflector based on periodic curvature calculations, which can also be used as fundamental data for repair and reinforcement work in the future.
机译:在这项研究中,开发了曲率变化跟踪程序来评估非常长的基线干涉(VLBI)天线结构的主反射器中的曲率变化。通过将主反射器装配到三维(3D)椭球模型中而开发的几何模型数据用作跟踪程序的基础数据。使用通过基于非目标的近距离摄影测量法提取的反射器表面上的特征点的3D位置坐标,建立了3D椭圆拟合模型。为了提高3D椭球模型的拟合精度,可以通过最小化共轭点和椭球拟合模型之间的残差并去除异常值来计算最佳参数。结果,从统计学上确认了椭圆体模型的拟合精度提高了。改进的椭球模型被合并到曲率变化跟踪程序中。所开发的程序将用于基于周期性曲率计算来评估主反射器的结构稳定性,该值还可在将来用作维修和加固工作的基础数据。

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