The estimation of the ionospheric electron density by kriging is based on the optimization of a parametric measurement covariance model. First, the extension of kriging with slant total electron content (STEC) measurements based on a spatial covariance to kriging with a spatial-temporal covariance model, assimilating STEC data of a sliding window, is presented. Secondly, a novel tomography approach by gradient enhanced kriging (GEK) is developed. Beyond the ingestion of STEC measurements, GEK assimilates ionosonde characteristics providing peak electron density measurements as well as gradient information. Both approaches deploy the 3D electron density model NeQuick as a priori information and estimate the covariance parameter vector withi...
Total Electron Content ( TEC) is an important parameter in monitoring ionospheric variability. In a ...
Spatiotemporal variations in the ionosphere affects the HF and satellite communications and navigati...
Observation of the 3-dimensional (3-D) electron density of the ionosphere is useful to study large-s...
The estimation of the ionospheric electron density by kriging is based on the optimization of a para...
The estimation of the ionospheric electron density by kriging is based on the optimization of a para...
In relation to satellite applications like global navigation satellite systems (GNSS) and remote se...
In relation to satellite applications like global navigation satellite systems (GNSS) and remote se...
Three-dimensional imaging of the electron density distribution in the ionosphere is a crucial task f...
GPS integrated Total Electron Content measurements received at the ground or in space are used for t...
Spatiotemporal variations in the ionosphere affects the BF and satellite communications and navigati...
Electron density distribution is the major determining parameter of the ionosphere. Computerized Ion...
The accuracy and availability of satellite-based applications like GNSS positioning and remote sens...
Ionospheric delay effect is a critical issue that limits the accuracy of precise Global Navigation S...
We produced the electron density distribution in the ionosphere over South Korea using the data from...
The propagation delays in GNSS, introduced by the ionosphere, can be estimated and corrected much ea...
Total Electron Content ( TEC) is an important parameter in monitoring ionospheric variability. In a ...
Spatiotemporal variations in the ionosphere affects the HF and satellite communications and navigati...
Observation of the 3-dimensional (3-D) electron density of the ionosphere is useful to study large-s...
The estimation of the ionospheric electron density by kriging is based on the optimization of a para...
The estimation of the ionospheric electron density by kriging is based on the optimization of a para...
In relation to satellite applications like global navigation satellite systems (GNSS) and remote se...
In relation to satellite applications like global navigation satellite systems (GNSS) and remote se...
Three-dimensional imaging of the electron density distribution in the ionosphere is a crucial task f...
GPS integrated Total Electron Content measurements received at the ground or in space are used for t...
Spatiotemporal variations in the ionosphere affects the BF and satellite communications and navigati...
Electron density distribution is the major determining parameter of the ionosphere. Computerized Ion...
The accuracy and availability of satellite-based applications like GNSS positioning and remote sens...
Ionospheric delay effect is a critical issue that limits the accuracy of precise Global Navigation S...
We produced the electron density distribution in the ionosphere over South Korea using the data from...
The propagation delays in GNSS, introduced by the ionosphere, can be estimated and corrected much ea...
Total Electron Content ( TEC) is an important parameter in monitoring ionospheric variability. In a ...
Spatiotemporal variations in the ionosphere affects the HF and satellite communications and navigati...
Observation of the 3-dimensional (3-D) electron density of the ionosphere is useful to study large-s...