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Pregled bibliografske jedinice broj: 1279188

Swept path analyses using unmanned aerial system (UAS)


Bogdan, Kornelija; Barišić, Ivana; Moser, Vladimir; Rajle, Damir
Swept path analyses using unmanned aerial system (UAS) // Advances in Civil and Architectural Engineering, 13 (2022), 25; 24-31 doi:10.13167/2022.25.3 (recenziran, članak, znanstveni)


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Naslov
Swept path analyses using unmanned aerial system (UAS)

Autori
Bogdan, Kornelija ; Barišić, Ivana ; Moser, Vladimir ; Rajle, Damir

Izvornik
Advances in Civil and Architectural Engineering (2975-3848) 13 (2022), 25; 24-31

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

Ključne riječi
UAS ; swept path ; traffic area design ; vehicle trajectories

Sažetak
The aim of this study was the verification of unmanned aerial system (UAS) application in vehicle swept path analyses by analysing the advantages and disadvantages and comparing field test results with two software solutions. In this study, swept-path analyses were performed for two vehicle types and two turning angles. UAS images were used to extract the vehicle swept path and the results were compared with two commonly used swept-path analysis software. The results indicated larger deviations between the swept paths for an angle of 125° for a light truck. For both analysed vehicles and turning angles, larger deviations were observed for the outermost point trajectory. Passenger cars occupy less space performing 125° turns than software analysis predicts, indicating that they are on the safe side when designing vehicle manipulative surfaces. For the analysed light truck, a larger turning radius was observed than the predicted for a 125° turning angle, which may be caused by the approaching and turning speeds under which the test was performed. Finally, while the UAS recording process is relatively simple and fast, data processing is demanding and time-consuming. To fulfil its full potential within swept path analyses, UAS needs to be complemented by proper data analysis software solutions for faster and more accurate swept path extraction, which would improve and rationalise the traffic area designing process.

Izvorni jezik
Engleski

Znanstvena područja
Građevinarstvo



POVEZANOST RADA


Ustanove:
Građevinski i arhitektonski fakultet Osijek

Profili:

Avatar Url Ivana Barišić (autor)

Avatar Url Vladimir Moser (autor)

Poveznice na cjeloviti tekst rada:

doi hrcak.srce.hr

Citiraj ovu publikaciju:

Bogdan, Kornelija; Barišić, Ivana; Moser, Vladimir; Rajle, Damir
Swept path analyses using unmanned aerial system (UAS) // Advances in Civil and Architectural Engineering, 13 (2022), 25; 24-31 doi:10.13167/2022.25.3 (recenziran, članak, znanstveni)
Bogdan, K., Barišić, I., Moser, V. & Rajle, D. (2022) Swept path analyses using unmanned aerial system (UAS). Advances in Civil and Architectural Engineering, 13 (25), 24-31 doi:10.13167/2022.25.3.
@article{article, author = {Bogdan, Kornelija and Bari\v{s}i\'{c}, Ivana and Moser, Vladimir and Rajle, Damir}, year = {2022}, pages = {24-31}, DOI = {10.13167/2022.25.3}, keywords = {UAS, swept path, traffic area design, vehicle trajectories}, journal = {Advances in Civil and Architectural Engineering}, doi = {10.13167/2022.25.3}, volume = {13}, number = {25}, issn = {2975-3848}, title = {Swept path analyses using unmanned aerial system (UAS)}, keyword = {UAS, swept path, traffic area design, vehicle trajectories} }
@article{article, author = {Bogdan, Kornelija and Bari\v{s}i\'{c}, Ivana and Moser, Vladimir and Rajle, Damir}, year = {2022}, pages = {24-31}, DOI = {10.13167/2022.25.3}, keywords = {UAS, swept path, traffic area design, vehicle trajectories}, journal = {Advances in Civil and Architectural Engineering}, doi = {10.13167/2022.25.3}, volume = {13}, number = {25}, issn = {2975-3848}, title = {Swept path analyses using unmanned aerial system (UAS)}, keyword = {UAS, swept path, traffic area design, vehicle trajectories} }

Časopis indeksira:


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


Citati:





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