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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >A New Method for Ionospheric Tomography and Its Assessment by Ionosonde Electron Density, GPS TEC, and Single-Frequency PPP
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A New Method for Ionospheric Tomography and Its Assessment by Ionosonde Electron Density, GPS TEC, and Single-Frequency PPP

机译:电离层层析成像的一种新方法及其通过离子探空仪电子密度,GPS TEC和单频PPP进行评估

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摘要

A new tomographic method was developed with the main goal of mapping the ionosphere in the region of Brazil. The ionospheric background was estimated based on ionosonde and radio-occultation measurements to overcome the lack of data provided by climatological models in low-latitude regions. A new method of performing iterations of the conventional multiplicative algebraic reconstruction technique (MART) was also used in order to avoid nonilluminated cells and improve the spatial resolution. The quality assessment using independent ionosonde data during two weeks in 2013 showed a better performance of the proposed method in comparison to the international reference ionosphere, providing improvements of 31% for the F-layer peak height h(m) and 24% for the ionospheric peak of electron density N-m. The tomographic technique was also evaluated in the estimation of the total electron content (TEC) and in the single-frequency precise point positioning (PPP). Improvements of 59% in TEC and 31% in the single-frequency PPP were obtained in comparison to the results derived from global ionospheric maps. In addition, a better daily description of the ionosphere was obtained using the proposed method, where it was possible to detect the peak height increasing associated with the prereversal enhancement of the vertical plasma drift that occurs near sunset hours. The results reveal that the modified form of the MART tomographic technique can be considered a useful tool for technical and scientific communities involved in space weather, spatial geodesy, and telecommunications.
机译:开发了一种新的层析成像方法,其主要目的是绘制巴西区域电离层的地图。电离层的背景是根据电离层探空仪和无线电掩星法测量的,以克服低纬度地区气候模型所缺乏的数据。为了避免非照亮单元并提高空间分辨率,还使用了一种执行常规乘法代数重构技术(MART)的迭代方法。在2013年的两周中,使用独立的离子探空仪数据进行的质量评估显示,与国际参考电离层相比,该方法的性能更好,F层峰高h(m)提高了31%,电离层提高了24%电子密度Nm的峰值。层析成像技术还用于评估总电子含量(TEC)和单频精确点定位(PPP)。与从全球电离层图获得的结果相比,TEC的提高了59%,单频PPP的提高了31%。此外,使用提出的方法可以获得对电离层的更好的日常描述,在该方法中,可以检测到与日落时间附近发生的垂直等离子体漂移的逆转增强相关的峰高增加。结果表明,MART层析成像技术的修改形式可以被认为是参与空间天气,空间大地测量学和电信技术和科学界的有用工具。

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