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Analiza kakovosti določitve položaja v realnem času z uporabo različnih sistemov GNSS : magistrsko delo
ID Šoič, Grega (Author), ID Stopar, Bojan (Mentor) More about this mentor... This link opens in a new window, ID Roland, Markus (Comentor), ID Sterle, Oskar (Comentor)

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PID: 20.500.12556/rul/b05cafb3-36bc-4b7d-a284-d9f321105826

Abstract
Vsako leto se izvede nekaj izstrelitev novih satelitov v različnih globalnih navigacijskih satelitskih sistemih (GNSS) z namenom izboljšanja globalne pokritosti z navigacijskim satelitskim signalom. To hkrati omogoča tudi, da določitev položaja z uporabo sistemov GNSS postaja vedno bolj uporabljana tehnika v različnih aplikacijah določitve položaja. GNSS omogoča določitev položaja visoke točnosti in natančnosti v realnem času z visoko hitrostjo izvajanja meritev in sicer 1 Hz ali celo 10 Hz. Ta lastnost je zelo zaželena pri projektih stalno potekajočega monitoringa, zato GNSS monitoring postaja vedno bolj uporabljan pristop. GNSS monitoring se običajno izvaja z uporabo tehnik diferencialnega GNSS. Tako je bil namen te raziskave ovrednotiti in primerjati rezultate določitve položaja v realnem času z uporabo tehnik diferencialnega GNSS ter podatkov opazovanj različnih kombinacij frekvenc in različnih sistemov GNSS. Za namen raziskave je bil nad 14 dnevnimi seti eno- in dvofrekvenčnih opazovanj GNSS, pridobljenih s treh GNSS sprejemnikov, ki so tvorili dva, 51 in 13 990 metrov dolga, bazna vektorja, izveden večkratni preračun določitev položaja v realnem času. Ti seti so vsebovali opazovanja GNSS sistemov GPS, GLONASS in BeiDou, med katerimi je bilo mogoče narediti sedem različnih kombinacij. Serije koordinat določitev položaja v realnem času, ki so bile izračunane na podlagi vseh kombinacij med sedmimi kombinacijami sistemov GNSS, opazovanji dveh frekvenc in dveh dolžin baznih vektorjev, so bile analizirane in primerjane med sabo. Naloga se zaključi z razpravo o rezultatih opravljene raziskave, ki so predstavljeni v obliki različnih grafičnih prikazov in statističnih indikatorjev. Ugotovitve pokažejo razliko v rezultatih ob uporabi različnih sistemov GNSS ločeno ali kombiniranja med njimi. Kot samostojen sistem se za najbolj točnega izkaže GPS, med tem ko kombinacija vseh treh sistemov GNSS vrne najboljše numerične vrednosti rezultatov.

Language:Slovenian
Keywords:diferencialni GNSS, RTK, GNSS monitoring, GPS, GLONASS, BeiDou
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FGG - Faculty of Civil and Geodetic Engineering
Publisher:[G. Šoič]
Year:2017
PID:20.500.12556/RUL-96475 This link opens in a new window
UDC:528.28(043.3)
COBISS.SI-ID:8204129 This link opens in a new window
Publication date in RUL:02.10.2017
Views:2400
Downloads:724
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Secondary language

Language:English
Title:Quality Analysis of Real-Time Positioning Results Using Different GNSS : Master thesis
Abstract:
With new satellites of different Global Navigation Satellite Systems being launch every year in order to improve global positioning coverage, GNSS positioning is becoming a more and more used technique for various applications where position is needed. One of its abilities is to provide high accuracy and high precision coordinates in real time with a very high positioning rate of 1 Hz or even 10 Hz. This is a very desired condition in monitoring projects, thus GNSS monitoring is becoming used more often in continuous monitoring applications. GNSS monitoring is usually done by applying differential GNSS techniques. Therefore, the purpose of this research was to evaluate and compare long term differential GNSS real time positioning results obtained by using different GNSS and frequency combinations. Single- and dual frequency real time positioning of two, 51 and 13990 metre long baselines were computed several times using 14 day GNSS data sets from three GNSS receivers. These data sets included observations of GPS, GLONASS and BeiDou navigation satellite systems, which resulted in seven different GNSS combinations. Real time positioning coordinate series of all combinations between seven GNSS combinations, two frequencies and two baseline lengths were then analysed and compared to one another. The thesis ends with discussion about the results of this analysis, which are presented through various plots, histograms and statistical indicators. Findings show differences in results when using each GNSS separately or in different combinations. As a standalone system GPS proved to be the most accurate, while the combination of all three GNSS gave the best numerical results.

Keywords:Differential GNSS, RTK, GNSS monitoring, GPS, GLONASS, BeiDou

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