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Establishment of Karadeniz Technical University Permanent GNSS Station as Reactivated of TRAB IGS Station

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In recent years, Global Navigation Satellite Systems (GNSS) have gained great importance in terms of the benefi ts it provides such as precise geodetic point positioning, determining crustal deformations, navigation, vehicle monitoring systems and meteorological applications etc. As in Turkey, for this purpose, each country has set up its own GNSS station networks like Turkish National Permanent RTK Network analyzed precise station coordinates and velocities together with the International GNSS Service, Turkish National Fundamental GPS Network and Turkish National Permanent GNSS Network (TNPGN) stations not only are utilized as precise positioning but also GNSS meteorology studies so total number of stations are increased. This work is related to the reactivated of the TRAB IGS station which was established in Karadeniz Technical University, Department of Geomatics Engineering. Within the COST ES1206 Action (GNSS4SWEC) KTU analysis center was established and Trop-NET system developed by Geodetic Observatory Pecny (GOP, RIGTC) in order to troposphere monitoring. The project titled “Using Regional GNSS Networks to Strengthen Severe Weather Prediction” was accepted to the scientifi c and technological research council of Turkey (TUBITAK). With this project, we will design 2 new constructed GNSS reference station network. Using observation data of network, we will compare water vapor distribution derived by GNSS Meteorology and GNSS Tomography. At this time, KTU AC was accepted as E-GVAP Analysis Centre in December 2016. KTU reference station is aimed to be a member of the EUREF network with these studies.
Rocznik
Strony
253--258
Opis fizyczny
Bibliogr. 8 poz., rys.
Twórcy
  • Karadeniz Technical University Department of Geomatics Engineering 61080, Trabzon, Turkey
  • Karadeniz Technical University Department of Geomatics Engineering 61080, Trabzon, Turkey
Bibliografia
  • [1] Douša, J. (2010). Precise near real-time GNSS analyses at Geodetic observatory Pecný - precise orbit determination and water vapour monitoring, Acta Geodyn Geomater, 7, 1 (157), 1-11. http://www.irsm.cas.cz/materialy/acta_content/2010_01/2_Dousa.pdf.
  • [2] Gülal E., Dindar A. A., Akpınar B., Tiryakioğlu I, Aykut N. O., and Erdoğan H. (2015). Analysis and Management of GNSS Reference Station Data, Tehnički Vjesnik, 22, 2(2015), 407-414, DOI: 10.17559/TV- 20140717125413.
  • [3] URL 1. Accessed 7 May 2017 http://www.ga.gov.au/scientific-topics/positioning-navigation/geodesy/gnss-networks.
  • [4] URL 2. Accessed 10 May 2017 http://cors-tr.iku.edu.tr/en_corstr_projeozetigenel.htm.
  • [5] URL 3. Accessed 1 July 2017 http://www.mgm.gov.tr/FILES/iklim/iklim-degisikligi-projeksiyon2015.pdf.
  • [6] URL 4. Accessed 2 July 2017 http://www.pecny.cz/gop/index.php/trop-net.
  • [7] Yildirim, Ö., Salgin, Ö., and Bakici, S. (2011). The Turkish CORS Network (TUSAGA-Aktif), TS03G - GNSS CORS Networks Case Studies (Flash), FIG Working Week 2011, Bridging the Gap between Cultures Marrakech, Morocco, 18-22 May 2011.
  • [8] Wu S., Manning T., Yuan Y., Wang X., Kealy A., Marshall J., and Zhang K. (2014). Strengthening Severe Weather Prediction Using the Advanced Victorian Regional GPS Network − a Recent NDRGS Project, Geospatial Science Research 3. School of Mathematical and Geospatial Science, RMIT University.
Uwagi
PL
Opracowanie rekordu w ramach umowy 509/P-DUN/2018 ze środków MNiSW przeznaczonych na działalność upowszechniającą naukę (2018)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ad52684c-6894-415e-b0f4-e8c99470c4a2
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