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ISSN 2310-4376

DOI: 10.17273/CADGIS.2016.2

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Article from issue CAD & GIS for roads. — 2016. — No.2(7)

Measure methods evolution: from P to PPP

DOI: 10.17273/CADGIS.2016.2.5

  • V.N. Gulin, chief executive officer (CEO) of Indor-Center LLC (Moscow, Russia)

Modern technologies of geodesic measurements provide spatial data collection in high degree accuracy and detailization that it is allowed to lead to a new level work effectivity on all life-cycle phases of transport infrastructure objects, including project documentation development, construction (maintenance, reconstruction) and exploitation of roads. In the article some tuning points of geodesic measurement methods are considered, describing of modern positioning technologies and the abilities that ones open as applied to road field is presented.

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BiBTeX

@ARTICLE{Gulin2017:CADGIS-2016-2-5,
   author = "Gulin, V.N.",
   title = "Measure methods evolution: from P to PPP",
   journal = "CAD & GIS for roads",
   year = "2016",
   number = "2(7)",
   pages = "63--69",
   language = russian
}

Permanent URL

http://www.cadgis.ru/2016/7/CADGIS-2016-2(7)-05.Gulin(Measure-evolution).pdf

Keywords

survey, field survey, road survey, GIS, geographic information system, GIS for road and highway management, survey, diagnostics, road survey, road diagnostics, traffic plan, traffic plan design, BIM, building information modeling, information modeling, road information modeling, CAD, computer-aided design, computer-aided road design, road design, highway engineering, technical regulations, roads, highways, road infrastructure

References

  1. Khrenov L.S. Khronologiya otechestvennoy geodezii s drevneyshikh vremen i do nashikh dney [Chronology of Russian geodesy from ancient times to our days]. Leningrad, 1987. 291 p. (in Russian)
  2. Papkovskiy P.P. Iz istorii geodezii, topografii i kartografii v Rossii [From the history of geodesy, topography and cartography in Russia]. Moscow, 1983. 160 p. (in Russian)
  3. Teterin G.N. Istoriya geodezii s drevneyshikh vremen [History of geodesy since ancient times]. Novosibirsk, 2001. 432 p. (in Russian)
  4. Istoriya Geodezii [History of geodesy]. URL: http://istgeodez.com (accessed: 30.05.2017) (in Russian)
  5. Volkov S.N. Zemleustroystvo imeniy znatnykh lyudey v drevnosti [Land management of the estates of noble people in antiquity] // Zemleustroystvo, kadastr i monitoring zemel — Land management, land monitoring and cadaster. 2011. No. 10(82). P. 17−27. (in Russian)
  6. Gulin V.N. Tsifrovyye modeli dlya sistem upravleniya dorozhno-stroitelnymi mashinami [Data models for road machinery control systems] // SAPR i GIS avtomobilnykh dorog — CAD & GIS for roads. 2015. No.1(4). P. 56-59. DOI: 10.17273/CADGIS.2015.1.6 (in Russian)
  7. Laínez Samper M.D. et al. Multisystem real time precise-point-positioning // Coordinates. February 2011. V. VII. Iss. 2. P. 13-18.
  8. Popov V.A., Boykov V.N. Ob informatsionnykh modelyakh dorog v tekhnicheskoy politike Goskompanii Avtodor [About information models of roads in technological policy of Russian Highways State Company] // SAPR i GIS avtomobilnykh dorog — CAD & GIS for roads. 2014. No.2(3). P. 8-11. DOI: 10.17273/CADGIS.2014.2.2 (in Russian)
  9. Skvortsov A.V., Sarychev D.S. Zhiznennyy tsikl proyektov avtomobilnykh dorog v kontekste informatsionnogo modelirovaniya [Road project life cycle for information modeling] // SAPR i GIS avtomobilnykh dorog — CAD & GIS for roads. 2015. No.1(4). P. 4-14. DOI: 10.17273/CADGIS.2015.1.1 (in Russian)

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