This paper presents a method to derive the ionospheric total electron content (TEC) and to estimate the biases of GPS satellites and dual frequency receivers using the GPS Earth Observation Network (GEONET) in Japan. Based on the consideration that the TEC is uniform in a small area, the method divides the ionosphere over Japan into 32 meshes. The size of each mesh is 2° by 2° in latitude and longitude, respectively. By assuming that the TEC is identical at any point within a given mesh and the biases do not vary within a day, the method arranges unknown TECs and biases with dual GPS data from about 209 receivers in a day unit into a set of equations. Then the TECs and the biases of satellites and receivers were determin...
This is a pre-print of an article published in GPS Solutions. The final authenticated version is ava...
International audienceA regional reference model of total electron content (TEC) was constructed usi...
[1] As the number of ground-based and space-based receivers tracking the Global Positioning System (...
Abstract. This paper presents a method to derive the iono-spheric total electron content (TEC) and t...
International audienceThis paper presents a method to derive the ionospheric total electron content ...
Dual-frequency Global Positioning System (GPS) receivers present a plausible and cost-effective way ...
receivers cover Japan’s islands, has a large capability in imaging ionospheric total electron conten...
Two-dimensional ionospheric total electron content (TEC) maps have been derived from ground-based Gl...
With one bias estimation method, the latitude-related error distribution of instrumental biases esti...
The ionospheric total electron content (TEC) is the integrated electron density across a unit area. ...
Dual-frequency Global Positioning System (GPS) receivers present a plausible and cost-effective way ...
2016 Spring.Includes bibliographical references.The ionospheric total electron content (TEC) is the ...
An algorithm has been developed to derive the ionospheric total electron content (TEC) and to estima...
We estimated the receiver and satellite differential code bias (DCB) based on the ionospheric total ...
This is a pre-print of an article published in GPS Solutions. The final authenticated version is ava...
This is a pre-print of an article published in GPS Solutions. The final authenticated version is ava...
International audienceA regional reference model of total electron content (TEC) was constructed usi...
[1] As the number of ground-based and space-based receivers tracking the Global Positioning System (...
Abstract. This paper presents a method to derive the iono-spheric total electron content (TEC) and t...
International audienceThis paper presents a method to derive the ionospheric total electron content ...
Dual-frequency Global Positioning System (GPS) receivers present a plausible and cost-effective way ...
receivers cover Japan’s islands, has a large capability in imaging ionospheric total electron conten...
Two-dimensional ionospheric total electron content (TEC) maps have been derived from ground-based Gl...
With one bias estimation method, the latitude-related error distribution of instrumental biases esti...
The ionospheric total electron content (TEC) is the integrated electron density across a unit area. ...
Dual-frequency Global Positioning System (GPS) receivers present a plausible and cost-effective way ...
2016 Spring.Includes bibliographical references.The ionospheric total electron content (TEC) is the ...
An algorithm has been developed to derive the ionospheric total electron content (TEC) and to estima...
We estimated the receiver and satellite differential code bias (DCB) based on the ionospheric total ...
This is a pre-print of an article published in GPS Solutions. The final authenticated version is ava...
This is a pre-print of an article published in GPS Solutions. The final authenticated version is ava...
International audienceA regional reference model of total electron content (TEC) was constructed usi...
[1] As the number of ground-based and space-based receivers tracking the Global Positioning System (...