利用集成GPS接收机改进反射GPS信号L1/L2观测技术的瞬时大气校正

L. Shen, J. Juang, Ching-Lang Tsai, C. Tseng, Chia-hyang Chang
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引用次数: 0

摘要

本文旨在描述反射GPS信号与环境影响因素的关系。没有阐明软件维度,任何关于控制的讨论都是不完整的。通过给出4个或更多伪距离和星历表,对最小二乘搜索接收机位置的高度迭代循环进行改进和增强,并对图进行放大以检测搜索模式。[1]软件是利用MATLAB工具开发的,可以实时显示反射表面积高度的结果。对于反射信号的应用,已经证明GPS接收机不能平滑地检测到反射信号,因为在地下基地接收系统下,当GPS信号较弱且不连续反射时,不能平滑地接收到反射的GPS信号。这个问题对反射信号的应用产生了负面影响。集成接收系统的设计允许平滑地接收由水或地面反射的信号。提出了一种利用地表高程谱、高程角和瞄准线理论进行反射几何和大气校正的快速分辨测高方法。
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Improving instantaneous atmospheric corrections for reflected GPS signals L1/L2 observation techniques with an integrated GPS receiver
The paper is intended to describe relationships of reflected GPS signals and environmental effect factors. No discussion of control would be complete without illuminating the software dimension. An altitude iteration loop into least squares searching for receiver position was modified and enhanced by giving 4 or more pseudo-ranges and ephemeredes and zooming on the plot to detect the search pattern. [1] The software is developed using MATLAB tools, which can display results of the reflected surface area altitude in real time. For the reflected signal application, it has been proven that a GPS receiver cannot smoothly detect reflected signals because under the underground base receiver system cannot smoothly receive the reflected GPS signals when the GPS signals are weak and discontinuously reflected. [2] This problem negatively impacts and reduces application of reflected signals. The design of an integrated receiver system permits smooth reception of the signals reflected by the water or ground. A rapid resolution altimetry method was developed by using surface elevations spectrum with the elevation angle and line of sight theory in the reflecting geometry and atmospheric corrections with ambiguity solution.
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