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Journal ArticleDOI

Combination of different space-geodetic observations for regional ionosphere modeling

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TLDR
In this article, a procedure for multi-dimensional ionospheric modeling is introduced, which consists of a given reference part and an unknown correction part expanded in terms of B-spline functions.
Abstract
Most of the space-geodetic observation techniques can be used for modeling the distribution of free electrons in the Earth’s ionosphere. By combining different techniques one can take advantage of their different spatial and temporal distributions as well as their different observation characteristics and sensitivities concerning ionospheric parameter estimation. The present publication introduces a procedure for multi-dimensional ionospheric modeling. The model consists of a given reference part and an unknown correction part expanded in terms of B-spline functions. This approach is used to compute regional models of Vertical Total Electron Content (VTEC) based on the International Reference Ionosphere (IRI 2007) and GPS observations from terrestrial Global Navigation Satellite System (GNSS) reference stations, radio occultation data from Low Earth Orbiters (LEOs), dual-frequency radar altimetry measurements, and data obtained by Very Long Baseline Interferometry (VLBI). The approach overcomes deficiencies in the climatological IRI model and reaches the same level of accuracy than GNSS-based VTEC maps from IGS. In areas without GNSS observations (e.g., over the oceans) radio occultations and altimetry provide valuable measurements and further improve the VTEC maps. Moreover, the approach supplies information on the offsets between different observation techniques as well as on their different sensitivity for ionosphere modeling. Altogether, the present procedure helps to derive improved ionospheric corrections (e.g., for one-frequency radar altimeters) and at the same time it improves our knowledge on the Earth’s ionosphere.

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Citations
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Journal ArticleDOI

On the short-term temporal variations of GNSS receiver differential phase biases

TL;DR: The short-term temporal variations of receiver differential phase biases (DPB) are identified as another possible cause of leveling errors in the ionospheric observables, and epoch-wise BR-DPB estimates can exhibit remarkable variability over a rather short period of time.
Journal ArticleDOI

Three methods to retrieve slant total electron content measurements from ground-based GPS receivers and performance assessment

TL;DR: A comparative study of the formal precision and the empirical accuracy of the TECM that are retrieved, respectively, by three methods from the same set of GPS data is performed.
Journal ArticleDOI

Comparison of spherical harmonic and B spline models for the vertical total electron content

TL;DR: In this paper, a tensor product of trigonometric B spline functions for the longitude and two sets of endpoint-interpolating B splines for latitude and time, respectively, are used to model the geodetic ionosphere.
Journal ArticleDOI

Global ionosphere maps based on GNSS, satellite altimetry, radio occultation and DORIS

TL;DR: In this article, a global ionosphere map (GIM) is built with temporal intervals of 2 h by the integration of GNSS, satellite altimetry, radio occultation and DORIS data, and the authors investigate the integration method for multi-source data and used the data in May 2013 to validate the effectiveness of integration.
References
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Journal ArticleDOI

The International GNSS Service in a changing landscape of Global Navigation Satellite Systems

TL;DR: The IGS Strategic Plan and future directions of the globally-coordinated ~400 station IGS network, tracking data and information products, and outlines the scope of a few of its numerous working groups and pilot projects as the world anticipates a truly multi-system GNSS in the coming decade are discussed.
Journal ArticleDOI

International Reference Ionosphere 2007: Improvements and new parameters

TL;DR: The International Reference Ionosphere (IRI) is the de facto international standard for the climatological specification of ionospheric parameters and as such it is currently undergoing registration as Technical Specification (TS) of the International Standardization Organization (ISO) as discussed by the authors.
Journal ArticleDOI

The IGS VTEC maps: a reliable source of ionospheric information since 1998

TL;DR: In this article, the IGS combined vertical total electron content (VTEC) maps were analyzed and the results confirmed the good performance of the combined VTEC maps, and the characteristic VTEC variability periods.
BookDOI

GPS for geodesy

TL;DR: The role of GPS in space geodesy is discussed in this paper. But the GPS as a tool in global geodynamics atmospheric models from GPS are not discussed in this paper.
Journal ArticleDOI

Regularization of geopotential determination from satellite data by variance components

TL;DR: In this paper, a Bayesian inference on variance components is proposed to solve the two tasks by using a stochastic estimator of the traces of matrices connected with the inverse of the matrix of normal equations.
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