利用IONOLAB方法估算电离层总电子含量

H. Nayir, F. Arıkan, C. B. Erol, O. Arikan
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引用次数: 2

摘要

电离层是高频通信和卫星通信的重要大气层,可以通过总电子含量(TEC)来研究电离层。全球定位系统为估计TEC提供了经济有效的方法。为了估计高分辨率、鲁棒的TEC值,提出了正则化TEC估计方法(D-TEI)。该方法结合了GPS卫星在10°仰角极限以上的测量数据,可获得30 s时间分辨率的估计。本文研究了电离层高度、加权函数和卫星接收机偏差等D-TEI方法中使用的参数。发现D-TEI方法的TEC估算结果几乎与电离层高度无关。尝试了不同的权重函数,选择了使非电离层效应最小的权重函数。利用正确形式的卫星和接收机偏差,得到了与IGS分析中心一致的TEC估计结果。本文对该方法进行了改进,加入了相位测量。采用伪距或相位测量作为输入,采用D-TEI方法获得了高分辨率、鲁棒的TEC估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ionospheric Total Electron Content Estimation Using IONOLAB Method
Ionosphere which is an important atmospheric layer for HF and satellite communications, can be investigated through Total Electron Content (TEC). Global Positioning System provides cost-effective means for TEC estimation. Regularized TEC estimation method (D-TEI) is developed to estimate high resolution, robust TEC values. The method combines measurements of GPS satellites above 10° elevation limit and estimates can be obtained with 30 s time resolution. In this paper, parameters that are used in D-TEI method such as ionospheric height, weighting function, and satellite receiver biases are studied. It is found that TEC estimation results of D-TEI method is almost independent of ionospheric height. Different weighting functions are tried and the weighting function that minimizes non-ionospheric effects is selected. By using satellite and receiver biases in the correct form consistent TEC estimation results are obtained with IGS analysis centers. In this paper, the method is improved to include phase measurements. Taking either pseudorange or phase measurements as input, high resolution, robust TEC estimates are obtained using D-TEI method.
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