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ISSN 2310-4376

DOI: 10.17273/CADGIS.2017.2

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Article from issue CAD & GIS for roads. — 2017. — No.2(9)

Analysis of unmanned aerial vehicles application for geodesic control of constructing and exploiting highways

DOI: 10.17273/CADGIS.2017.2.5

  • O.G. Sukonnikov, engineer of Indor-Center LLC (Moscow, Russia)
  • A.A. Neretin, Ph.D., docent, docent of MADSTU (MADI) (Moscow, Russia)
  • V.A. Guryev, senior teacher of MADSTU (MADI) (Moscow, Russia)

The question about modern technologies application in methods getting of geospatial data in engineering research in highway construction is considered. Concrete results of these technologies application, its analysis and brief conclusions about perspective of its application are appeared.

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BiBTeX

@ARTICLE{Sukonnikov2017:CADGIS-2017-2-5,
   author = "Sukonnikov, O.G. and Neretin, A.A. and Guryev, V.A.",
   title = "Analysis of unmanned aerial vehicles application for geodesic control of constructing and exploiting highways",
   journal = "CAD & GIS for roads",
   year = "2017",
   number = "2(9)",
   pages = "44--48",
   language = russian
}

Permanent URL

http://www.cadgis.ru/2017/9/CADGIS-2017-2(9)-05.Sukonnikov-Neretin-Guryev(UAV-for-road-control).pdf

Keywords

UAV, drone, geodetic control, build control, BIM, building information modeling, information modeling, road information modeling, CAD, computer-aided design, computer-aided road design, road design, highway engineering, GIS, geographic information system, GIS for road and highway management, technical regulations, roads, highways, road infrastructure

References

  1. Official website of company "Rakurs". URL: http://www.racurs.ru (accessed: 30.11.2017) (in Russian)
  2. Sarychev D.S., Skvortsov A.V. Avtomatizirovannaya tekhnologiya izyskaniy v stroitelnom kontrole [Automated survey technology in the construction supervision] // SAPR i GIS avtomobilnykh dorog — CAD & GIS for roads. 2016. No.1(6). P. 20-23. DOI: 10.17273/CADGIS.2016.1.3 (in Russian)
  3. Inozemtsev D.P. Avtomatizirovannaya aerofotosyemka s pomoshchyu programmno-apparatnogo kompleksa GeoScan-PhotoScan [Air photography by means of hardware-software solution GeoScan-PhotoScan] // SAPR i GIS avtomobilnykh dorog — CAD & GIS for roads. 2014. No.1(2). P. 46-51. DOI: 10.17273/CADGIS.2014.1.10 (in Russian)
  4. Jarroush J. Tsifrovaya kamera kak prakticheskiy geodezicheskiy instrument: problemy i resheniya [Digital camera as a practical survey instrument: problems and solutions] // SAPR i GIS avtomobilnykh dorog — CAD & GIS for roads. 2014. No.1(2). P. 52-56. DOI: 10.17273/CADGIS.2014.1.11 (in Russian)
  5. Korobov D.A. Ispolzovaniye bespilotnykh aviatsionnykh sistem dlya monitoringa lineynykh obyektov [UAV usage for linear objects monitoring] // Molodezhnyy nauchnyy vestnik: elektronnyy nauchno-prakticheskiy zhurnal [Youth scientific bulletin: electronic scientific and practical journal]. March 2017. URL: http://www.mnvnauka.ru/2017/05/Korobow.pdf (accessed: 30.11.2017) (in Russian)
  6. Gulin V.N., Mironov S.A., Neretin A.A. Problema obespecheniya yedinogo koordinatnogo prostranstva dlya obyektov dorozhnoy otrasli [United coordinate space for objects of road industry] // SAPR i GIS avtomobilnykh dorog — CAD & GIS for roads. 2015. No.1(4). P. 75-82. DOI: 10.17273/CADGIS.2015.1.10 (in Russian)

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