In relation to satellite applications like global navigation satellite systems (GNSS) and remote sensing, the electron density distribution of the ionosphere has significant influence on trans-ionospheric radio signal propagation. In this paper, we develop a novel ionospheric tomography approach providing the estimation of the electron density's spatial covariance and based on a best linear unbiased estimator of the 3-D electron density. Therefore a non-stationary and anisotropic covariance model is set up and its parameters are determined within a maximum-likelihood approach incorporating GNSS total electron content measurements and the NeQuick model as background. As a first assessment this 3-D simple kriging approach is applied...
Global Positioning System (GPS) satellites and receivers are used to derive total electron content (...
Cataloged from PDF version of article.Electron density distribution is the major determining paramet...
The correct representation of global‐scale electron density is crucial for monitoring and exploring ...
In relation to satellite applications like global navigation satellite systems (GNSS) and remote se...
The ionosphere is the upper part of the atmosphere where sufficient free electrons exist to affect t...
The estimation of the ionospheric electron density by kriging is based on the optimization of a para...
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...
Electron density distribution is the major determining parameter of the ionosphere. Computerized Ion...
When GPS navigation system radio waves pass trough the ionosphere and plasmasphere they are subject ...
GPS integrated Total Electron Content measurements received at the ground or in space are used for t...
Three-dimensional imaging of the electron density distribution in the ionosphere is a crucial task f...
The correct representation of global-scale electron density is crucial for monitoring and exploring ...
We produced the electron density distribution in the ionosphere over South Korea using the data from...
The ionosphere is the ionized part of the upper Earth's atmosphere lying between about 50 km and 100...
Global Positioning System (GPS) satellites and receivers are used to derive total electron content (...
Cataloged from PDF version of article.Electron density distribution is the major determining paramet...
The correct representation of global‐scale electron density is crucial for monitoring and exploring ...
In relation to satellite applications like global navigation satellite systems (GNSS) and remote se...
The ionosphere is the upper part of the atmosphere where sufficient free electrons exist to affect t...
The estimation of the ionospheric electron density by kriging is based on the optimization of a para...
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...
Electron density distribution is the major determining parameter of the ionosphere. Computerized Ion...
When GPS navigation system radio waves pass trough the ionosphere and plasmasphere they are subject ...
GPS integrated Total Electron Content measurements received at the ground or in space are used for t...
Three-dimensional imaging of the electron density distribution in the ionosphere is a crucial task f...
The correct representation of global-scale electron density is crucial for monitoring and exploring ...
We produced the electron density distribution in the ionosphere over South Korea using the data from...
The ionosphere is the ionized part of the upper Earth's atmosphere lying between about 50 km and 100...
Global Positioning System (GPS) satellites and receivers are used to derive total electron content (...
Cataloged from PDF version of article.Electron density distribution is the major determining paramet...
The correct representation of global‐scale electron density is crucial for monitoring and exploring ...