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首页> 外文期刊>ZFV: Zeitschrift fur Geodasie, Geoinformation und Landmanagement >Modeling atmospheric refraction influences by optical turbulences using an image-assisted total station
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Modeling atmospheric refraction influences by optical turbulences using an image-assisted total station

机译:使用图像辅助全站仪模拟光学湍流对大气折射的影响

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摘要

A large part of geodetic sensor systems use electromagnetic radiation to determine the measurement values (distances, directions, etc.). The geometry of the path of propagation and the velocity of the electromagnetic wave is strongly influenced by the physical state of the atmosphere. As most geodetic measurements are performed in the lower atmosphere, the study of refraction and of corresponding impact constitutes a key research field. In geodesy, the refractive index represents a common way to describe the terrestrial refraction - the literature refers to different methods for determining this value. Our study presents a method for the determination of the influence of refraction on the basis of optical measurements. The mathematical derivation is based on wellknown equations - the combination of different approaches leads to a uniform processing sequence which can easily be implemented. We present the theoretical foundations, details about the implementation and some preliminary tests.
机译:大地测量传感器系统大部分使用电磁辐射来确定测量值(距离,方向等)。传播路径的几何形状和电磁波的速度受大气层物理状态的强烈影响。由于大多数大地测量都是在低层大气中进行的,因此对折射和相应影响的研究就成为一个重要的研究领域。在大地测量学中,折射率是描述地面折射的一种常用方法-文献中涉及确定该值的不同方法。我们的研究提出了一种在光学测量基础上确定折射影响的方法。数学推导基于众所周知的方程式-不同方法的组合会导致可轻松实现的统一处理序列。我们介绍了理论基础,有关实现的详细信息和一些初步测试。

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