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A Troposphere Tomography Method by Combining the Truncation Coefficient and Variance Component Analysis

机译:通过组合截断系数和方差分析分析对流层断层扫描方法

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Traditional troposphere tomography method cannot use the GNSS sig?nals penetrating from the side face of research area, which not only decreases the utilization rate of GNSS observation but also leads to a low percentage of voxels crossed by rays. In order to overcome this issue, the GNSS signals penetrating from the model's side face are also used to build the observation equation by introducing the truncation coefficient in this paper. Due to the fact that the tomography mod-eling is consists of various equations, including observation equation (using signals from the side and top faces of research area to build equations), horizontal and vertical equations, how to determine the weightings of different equations is a key to obtain the reliable tomographic result. Therefore, a method is proposed to determine the weightings of various equations based on the variance component analysis (VCA). The data from Satellite Positioning Reference Station Network (SatRef) of Hong Kong over the period of 27 days is selected for the tomography experiment. The tomographic result shows that the proposed method is of ability to obtain a good quality. Comparing to the traditional method, the utilization rate and number of voxels crossed by rays have been improved by 32.21 and 12.23%, respectively. When compared to the radiosonde data, the RMS error of the reconstructed integral water vapor (IWV) derived from the proposed method (4.2 mm) superior to that from the traditional method (5.2 mm). The comparison of water vapor profiles also shows that the proposed method with a RMS value of 1.30 g/m~3, is smaller than that of traditional method with a value of 1.58 g/m~3, and the accuracy of tomographic result based on the proposed method is increased by 17.7%.
机译:传统的对流层断层扫描方法不能使用GNSS SIG?NALS从研究区域的侧面穿透,这不仅降低了GNSS观察的利用率,而且导致射线交叉的低百分比的体素。为了克服这个问题,通过在本文中引入截断系数,还用于从模型侧面穿透的GNSS信号来构建观察方程。由于断层摄影模式由各种方程组成,包括观察方程(使用来自研究区域的侧面和顶面和构建方程的信号),水平和垂直方程式,如何确定不同方程的权重获得可靠性断层结果的关键。因此,提出了一种方法基于方差分量分析(VCA)来确定各种方程的重量。选择在27天的香港卫星定位参考站网络(Satref)的数据被选为断层摄影实验。断层结果表明,所提出的方法具有获得质量优良的能力。与传统方法相比,射线交叉的血管素的利用率和数量分别得到32.21和12.23%。与无线电探测器数据相比,从传统方法(5.2mm)的所提出的方法(4.2mm)衍生自所提出的方法(4.2mm)的重建的整体水蒸气(IWV)的RMS误差。水蒸气分布的比较还表明,具有1.30g / m〜3的RMS值的所提出的方法小于传统方法,其值为1.58克/ m〜3,以及基于的断层抑制结果的精度所提出的方法增加了17.7%。

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