Requirements for nanosatellite-mounted GNSS-based instrument measuring ionospheric total electron content

Author:

Nikolaev P N,Kudryavtsev I A,Shafran S V

Abstract

Abstract A navigation receiver mounted on board of a micro/nanosatellite can be used as part of a scientific instrument for ionospheric study, for instance, identification of patterns in solar-terrestrial links and obtaining a set of statistical data to find the correlation between local fluctuations of the ionosphere and climatic changes. Such a device should produce an array of navigation measurements of carrier phases and pseudoranges, and also calculate on their basis the values of the absolute total electron content (TEC), which are used to study the ionosphere. To calculate the absolute TEC, we use a known technique that combines carrier phase and pseudorange measurements. Taking into account the peculiarities of this technique and the geometry of the measurements, we put forward a number of requirements for a scientific instrument to study the ionosphere.

Publisher

IOP Publishing

Subject

General Medicine

Reference22 articles.

1. Online service for monitoring the ionosphere based on data from the global navigation satellite system;Aleshin;J. Geomagnetism and Aeronomy,2014

2. Experience creating Roshydromet network radio tomography for the study and monitoring of the ionosphere;Alpatov;J. Heliogeophysical Research,2012

3. Radiotomographic reconstruction of ionization dip in the plasma near the Earth;Andreeva;J. JETP Letters,1990

4. History current state and future directions of ionospheric imaging;Bust;J. Reviews of Geophysics,2008

5. Radio tomography of the ionosphere: Analysis of an underdetermined ill-posed inverse problem regional application;Garcia;J. Radio Sci.,2008

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