Datasets of ionospheric parameters provided by SCINDA GNSS receiver from Lisbon airport area

Here we present datasets provided by a SCINDA GNSS receiver installed in the Lisbon airport area from November of 2014 to July of 2019. The installed equipment is a NovAtel EURO4 with a JAVAD Choke-Ring antenna. The data are in an archived format and include the general messages on quality of record...

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Main Authors: Tatiana Barlyaeva, Teresa Barata, Anna Morozova
Format: Article
Language:English
Published: Elsevier 2020-08-01
Series:Data in Brief
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S235234092030860X
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author Tatiana Barlyaeva
Teresa Barata
Anna Morozova
author_facet Tatiana Barlyaeva
Teresa Barata
Anna Morozova
author_sort Tatiana Barlyaeva
collection DOAJ
description Here we present datasets provided by a SCINDA GNSS receiver installed in the Lisbon airport area from November of 2014 to July of 2019. The installed equipment is a NovAtel EURO4 with a JAVAD Choke-Ring antenna. The data are in an archived format and include the general messages on quality of records (*.msg), RANGE files (*.rng), raw observables as the signal-to-noise (S/N) ratios, pseudoranges and phases (*.obs), receiver position information (*.psn), ionosphere scintillations monitor (ISMRB; *.ism) and ionospheric parameters: total electron content (TEC), rate of change of TEC index (ROTI), and the scintillation index S4 (*.scn). The presented data cover the full 2015 year. The raw data are of 1-min resolution and available for each of the receiver-satellite pairs. The processing and the analysis of the ionosphere scintillation datasets can be done using a specific ''SCINDA-Iono'' toolbox for the MATLAB developed by T. Barlyaeva in 2019 and available online via MathWorks File Exchange system. The toolbox calculates 1-h means for ionospheric parameters for each of the available receiver-satellite pairs and averaged over all available satellites during the analyzed hour. Here we present the processed data for the following months in 2015: March, June, October, and December. The months were selected as containing most significant geomagnetic events of 2015. The 1-h means for other months can be obtained from the raw data using the aforementioned toolbox. The provided datasets are interesting for the GNSS and ionosphere based scientific communities.
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spelling doaj.art-5bf74554b04944afbc7bdabf3800b95f2022-12-22T00:00:31ZengElsevierData in Brief2352-34092020-08-0131105966Datasets of ionospheric parameters provided by SCINDA GNSS receiver from Lisbon airport areaTatiana Barlyaeva0Teresa Barata1Anna Morozova2Corresponding author.; Center for Earth and Space Research of the University of Coimbra, University of Coimbra, Almas de Freire, Sta. Clara, 3040-004 Coimbra, PortugalCenter for Earth and Space Research of the University of Coimbra, University of Coimbra, Almas de Freire, Sta. Clara, 3040-004 Coimbra, PortugalCenter for Earth and Space Research of the University of Coimbra, University of Coimbra, Almas de Freire, Sta. Clara, 3040-004 Coimbra, PortugalHere we present datasets provided by a SCINDA GNSS receiver installed in the Lisbon airport area from November of 2014 to July of 2019. The installed equipment is a NovAtel EURO4 with a JAVAD Choke-Ring antenna. The data are in an archived format and include the general messages on quality of records (*.msg), RANGE files (*.rng), raw observables as the signal-to-noise (S/N) ratios, pseudoranges and phases (*.obs), receiver position information (*.psn), ionosphere scintillations monitor (ISMRB; *.ism) and ionospheric parameters: total electron content (TEC), rate of change of TEC index (ROTI), and the scintillation index S4 (*.scn). The presented data cover the full 2015 year. The raw data are of 1-min resolution and available for each of the receiver-satellite pairs. The processing and the analysis of the ionosphere scintillation datasets can be done using a specific ''SCINDA-Iono'' toolbox for the MATLAB developed by T. Barlyaeva in 2019 and available online via MathWorks File Exchange system. The toolbox calculates 1-h means for ionospheric parameters for each of the available receiver-satellite pairs and averaged over all available satellites during the analyzed hour. Here we present the processed data for the following months in 2015: March, June, October, and December. The months were selected as containing most significant geomagnetic events of 2015. The 1-h means for other months can be obtained from the raw data using the aforementioned toolbox. The provided datasets are interesting for the GNSS and ionosphere based scientific communities.http://www.sciencedirect.com/science/article/pii/S235234092030860XSCINDA GNSS receiverRaw dataReceiver positioningIonosphere scintillationsTECSCINDA ionosphere data analysis
spellingShingle Tatiana Barlyaeva
Teresa Barata
Anna Morozova
Datasets of ionospheric parameters provided by SCINDA GNSS receiver from Lisbon airport area
Data in Brief
SCINDA GNSS receiver
Raw data
Receiver positioning
Ionosphere scintillations
TEC
SCINDA ionosphere data analysis
title Datasets of ionospheric parameters provided by SCINDA GNSS receiver from Lisbon airport area
title_full Datasets of ionospheric parameters provided by SCINDA GNSS receiver from Lisbon airport area
title_fullStr Datasets of ionospheric parameters provided by SCINDA GNSS receiver from Lisbon airport area
title_full_unstemmed Datasets of ionospheric parameters provided by SCINDA GNSS receiver from Lisbon airport area
title_short Datasets of ionospheric parameters provided by SCINDA GNSS receiver from Lisbon airport area
title_sort datasets of ionospheric parameters provided by scinda gnss receiver from lisbon airport area
topic SCINDA GNSS receiver
Raw data
Receiver positioning
Ionosphere scintillations
TEC
SCINDA ionosphere data analysis
url http://www.sciencedirect.com/science/article/pii/S235234092030860X
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