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Ionospheric Models for Single Frequency Receivers: Difference between revisions
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The models used in [[GPS]] and [[GALILEO|Galileo]] are described in [[Klobuchar Ionospheric Model]] and [[NeQuick Ionospheric Model]]. The GPS/Galileo satellites broadcast the parameters needed to run these ionospheric models. | The models used in [[GPS]] and [[GALILEO|Galileo]] are described in [[Klobuchar Ionospheric Model]] and [[NeQuick Ionospheric Model]]. The GPS/Galileo satellites broadcast the parameters needed to run these ionospheric models. | ||
In [[GLONASS General Introduction|GLONASS]], there is no ionospheric model applied and thus, there is no broadcast of any parameter. However, | In [[GLONASS General Introduction|GLONASS]], there is no ionospheric model applied and thus, there is no broadcast of any parameter. However, any of the [[GPS]] or [[GALILEO]] ionospheric models could be used for [[GLONASS Signal Plan|GLONASS signals]], by applying a correction factor given by their relative squared frequencies ratio. | ||
[[Category:Fundamentals]] | [[Category:Fundamentals]] | ||
[[Category:GNSS Measurements Modelling]] | [[Category:GNSS Measurements Modelling]] |
Revision as of 12:55, 6 February 2012
Fundamentals | |
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Title | Ionospheric Models for Single Frequency Receivers |
Author(s) | J. Sanz Subirana, J.M. Juan Zornoza and M. Hernández-Pajares, Technical University of Catalonia, Spain. |
Level | Basic |
Year of Publication | 2011 |
Single frequency receivers need to apply a model to remove the ionospheric refraction, which can reach up to few tens of meters, depending on the elevation of rays and the ionospheric conditions.
The models used in GPS and Galileo are described in Klobuchar Ionospheric Model and NeQuick Ionospheric Model. The GPS/Galileo satellites broadcast the parameters needed to run these ionospheric models.
In GLONASS, there is no ionospheric model applied and thus, there is no broadcast of any parameter. However, any of the GPS or GALILEO ionospheric models could be used for GLONASS signals, by applying a correction factor given by their relative squared frequencies ratio.