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Pregled bibliografske jedinice broj: 1130980

Modelling GPS Positioning Performance in Northwest Passage during Extreme Space Weather Conditions


Špoljar, Darko; Jukić, Oliver; Sikirica, Nenad; Lenac, Kristijan; Filjar, Renato
Modelling GPS Positioning Performance in Northwest Passage during Extreme Space Weather Conditions // TransNav, 15 (2021), 1; 165-169 doi:10.12716/1001.15.01.16 (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1130980 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Modelling GPS Positioning Performance in Northwest Passage during Extreme Space Weather Conditions

Autori
Špoljar, Darko ; Jukić, Oliver ; Sikirica, Nenad ; Lenac, Kristijan ; Filjar, Renato

Izvornik
TransNav (2083-6473) 15 (2021), 1; 165-169

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
Global Positioning System (GPS) ; Northwest Passage ; Global Navigation Satellite System (GNSS) ; Generalized Regression Neural Networks (GRNN) ; Software Defined Radio (SDR) ; GNSS SDR Receiver ; GPS Position ; GPS Positioning Error

Sažetak
New shipping routes are emerging as a result of iceberg melting in polar regions, allowing for more efficient transport of people and goods. Opening of the Northwest Passage, the maritime route connecting Pacific Ocean with Atlantic Ocean through Arctic region, is considered such a development. The increasing transport exploitation of the Northwest Passage requires the quality assessment of maritime navigation aids for compliance with the established requirements. Here we contribute to the subject with addressing the polar commercial-grade GPS positioning performance in the Northwest Passage in the extreme positioning environment conditions during the massive 2003 space weather storm, a space weather event similar to the Carrington Storm of 1859, the largest space weather event recorded. The GPS positioning environment in the Northwest Passage during the Carrington-like storm in 2003 was reconstructed through the GNSS SDR receiver-post processing of the experimental GPS observations. The raw GPS dual-frequency pseudoranges and navigation messages were collected at the International GNSS Service (IGS) reference station at Ulukhaktok, Victoria Island, Canada. Pseudorange processing and GPS position estimation were performed in three scenarios of pre- mitigation of the ionospheric effects, known as the single major contributor GPS positioning error: (i) no corrections applied, (ii) Klobuchar- based corrected GPS positioning, and (iii) dual- frequency corrected GPS positioning. Resulting GPS positioning error vectors were derived as positioning error residuals from the known reference station position. Statistical properties of the northing, easting, and vertical components of the GPS positioning error vector were analyzed with a software developed in the R environment for statistical computing to select suitable methods for the GPS positioning error prediction model development. The analysis also identified the most suitable theoretical fit for experimental statistical distributions to assist the model development. Finally, two competitive GPS positioning error prediction models were developed, based on the exponential smoothing (reference) and the generalized regression neural networks (GRNN) (alternative) methods. Their properties were assessed to recommend their use as mitigation methods for adverse massive space weather effects in polar regions.

Izvorni jezik
Engleski

Znanstvena područja
Matematika, Računarstvo, Tehnologija prometa i transport, Zrakoplovstvo, raketna i svemirska tehnika, Interdisciplinarne tehničke znanosti



POVEZANOST RADA


Ustanove:
Tehnički fakultet, Rijeka,
Veleučilište u Virovitici,
Veleučilište Hrvatsko zagorje Krapina

Profili:

Avatar Url Nenad Sikirica (autor)

Avatar Url Kristijan Lenac (autor)

Avatar Url Oliver Jukić (autor)

Avatar Url Renato Filjar (autor)

Avatar Url Darko Špoljar (autor)

Poveznice na cjeloviti tekst rada:

doi www.transnav.eu www.transnav.eu

Citiraj ovu publikaciju:

Špoljar, Darko; Jukić, Oliver; Sikirica, Nenad; Lenac, Kristijan; Filjar, Renato
Modelling GPS Positioning Performance in Northwest Passage during Extreme Space Weather Conditions // TransNav, 15 (2021), 1; 165-169 doi:10.12716/1001.15.01.16 (međunarodna recenzija, članak, znanstveni)
Špoljar, D., Jukić, O., Sikirica, N., Lenac, K. & Filjar, R. (2021) Modelling GPS Positioning Performance in Northwest Passage during Extreme Space Weather Conditions. TransNav, 15 (1), 165-169 doi:10.12716/1001.15.01.16.
@article{article, author = {\v{S}poljar, Darko and Juki\'{c}, Oliver and Sikirica, Nenad and Lenac, Kristijan and Filjar, Renato}, year = {2021}, pages = {165-169}, DOI = {10.12716/1001.15.01.16}, keywords = {Global Positioning System (GPS), Northwest Passage, Global Navigation Satellite System (GNSS), Generalized Regression Neural Networks (GRNN), Software Defined Radio (SDR), GNSS SDR Receiver, GPS Position, GPS Positioning Error}, journal = {TransNav}, doi = {10.12716/1001.15.01.16}, volume = {15}, number = {1}, issn = {2083-6473}, title = {Modelling GPS Positioning Performance in Northwest Passage during Extreme Space Weather Conditions}, keyword = {Global Positioning System (GPS), Northwest Passage, Global Navigation Satellite System (GNSS), Generalized Regression Neural Networks (GRNN), Software Defined Radio (SDR), GNSS SDR Receiver, GPS Position, GPS Positioning Error} }
@article{article, author = {\v{S}poljar, Darko and Juki\'{c}, Oliver and Sikirica, Nenad and Lenac, Kristijan and Filjar, Renato}, year = {2021}, pages = {165-169}, DOI = {10.12716/1001.15.01.16}, keywords = {Global Positioning System (GPS), Northwest Passage, Global Navigation Satellite System (GNSS), Generalized Regression Neural Networks (GRNN), Software Defined Radio (SDR), GNSS SDR Receiver, GPS Position, GPS Positioning Error}, journal = {TransNav}, doi = {10.12716/1001.15.01.16}, volume = {15}, number = {1}, issn = {2083-6473}, title = {Modelling GPS Positioning Performance in Northwest Passage during Extreme Space Weather Conditions}, keyword = {Global Positioning System (GPS), Northwest Passage, Global Navigation Satellite System (GNSS), Generalized Regression Neural Networks (GRNN), Software Defined Radio (SDR), GNSS SDR Receiver, GPS Position, GPS Positioning Error} }

Časopis indeksira:


  • Web of Science Core Collection (WoSCC)
    • Emerging Sources Citation Index (ESCI)
  • Scopus


Citati:





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