DOI: 
10.22389/0016-7126-2025-1024-10-45-54
1 Nekhin S.S.
2 Rubenok A.N.
3 Babashkin N.M.
4 Kovrov A.A.
Year: 
№: 
1024
Pages: 
45-54

Roskadastr, PLC

1, 
2, 
3, 
4, 
Abstract:
An urgent matter in the field of laser scanning is development of a regulatory framework that governs the requirements for its implementation and the resulting products for the purposes of topographic mapping, cadastral surveys, and spatial data on terrain and objects. In particular, the standards and technical regulations in the said this field, both aerial and terrestrial, require further in-depth and detailed development. The authors present the results of developing a national standards series in the field of laser scanning, carried out as part of the Geokarta-2030 research project. On March 1, 2025, GOST R 71863–2024 "Phototopography. Laser Scanning. General Provisions", and national standards GOST R 72225–2025 “Phototopography were introduced; Ground-Based Laser Scanning”, Technical Requirements and GOST R 72226–2025 “Phototopography. Airborne Laser Scanning” as well. Technical Requirements were developed. The standards are to be used are intended for use by subjects of geodetic and cartographic activities, as well as by those of urban planning and cadastral activities, at arranging and carrying out air and ground laser scanning of terrain and spatial objects. The standards regulate making executing ground-based mobile, portable, stationary and airborne laser scanning from manned and unmanned aircraft. The result of creating and practical application of the developed documents is provision of a regulatory basis to formulate general and technical requirements for the process of obtaining laser scanning data
References: 
1.   Alekseenko N. N. Primenenie tekhnologii lazernogo skanirovaniya v razlichnykh otraslyakh i na razlichnykh etapakh zhiznennogo tsikla ob"ektov. Vestnik MGSU, 2016, no. 2, pp. 62–73. DOI: 10.22227/1997-0935.2016.2.62-73.
2.   Baborykin M. Yu. Vozdushnoe lazernoe skanirovanie – normativno-tekhnicheskie dokumenty i regulirovanie tsenoobrazovaniya. Nauka i mir, 2017, Vol. 2, no. 6 (46), pp. 70–73.
3.   Bryn' M. Ya., Bogomolova N. N., Zhuravlev I. N., Nikitchin A. A. Vozmozhnosti primeneniya lazernogo skanirovaniya na stadii izyskanii pri rekonstruktsii iskusstvennykh sooruzhenii. Byulleten' rezul'tatov nauchnykh issledovanii, 2020, 1. pp. 43–53. DOI: 10.20295/2223-9987-2020-1-43-53.
4.   Grishina A. I., Ramazanov R. R., Glukhov A. V., Levchenko E. N. Kombinirovanie metodov nazemnogo lazernogo skanirovaniya i aerofotos"emki s bespilotnogo letatel'nogo apparata dlya povysheniya effektivnosti kontrolya promyshlennogo stroitel'stva. Vektor GeoNauk, 2020, no. 3, pp. 55–65.
5.   Gura T. A., Turov D. I., Gura D. A., Shevchenko G. G. Obzor zarubezhnogo i otechestvennogo opyta vedeniya trekhmernogo kadastra. Nauchnye trudy KubGTU, 2017, no. 4, pp. 254–259.
6.   Kochneva A. A. Metodika postroeniya tsifrovykh modelei rel'efa po dannym vozdushnogo lazernogo skanirovaniya. Vestnik SSUGT, 2017, Vol. 22, no. 2, pp. 44–54.
7.   Nekhin S. S., Babashkin N. M. Lazernoe skanirovanie i perspektivy ego primeneniya dlya tselei topograficheskogo kartografirovaniya i kadastra. Vestnik SVFU. Ser. «Nauki o Zemle», 2022, no. 1 (25), pp. 29–39.
8.   Oleinikova L. A., Glushkova A. Yu. Obespechennost' normativnoi dokumentatsiei provedeniya vozdushno-lazernogo skanirovaniya dlya kadastrovykh rabot. Nauchnye trudy KubGTU, 2017, no. 4, pp. 260–264.
9.   Parhomenko D. V., Parhomenko I. V. Lazernoe skanirovanie v gosudarstvennom kadastre nedvizhimosti: tehnologicheskie i pravovye aspekty. Vestnik SGUGiT, 2016, 1 (33). pp. 114–124.
10.   Seredovich V. A., Altyntsev M. A. Primenenie dannyh mobil'nogo lazernogo skanirovaniya dlya sozdaniya topograficheskih planov. Mezhdunarodnaya nauchnaya konferentsiya «Geodeziya, geoinformatika, kartografiya, markshejderiya»: Sb. materialov HI Mezhdunarodnogo nauchnogo kongressa «Interjekspo GEO-Sibir'-2013», Novosibirsk: SGGA, 2013, Vol. 3, pp. 96–100.
11.   He G. B., Li L. L. (2020) Research and application of lidar technology in cadastral surveying and mapping. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, no. XLIII-B1, pp. 33–37. DOI: 10.5194/isprs-archives-XLIII-B1-2020-33-2020.
12.   Hendriatiningsih S., Hernandi A., Saptari A. Y., Widyastuti R., Saragih D. (2019) Building Information Modeling (BIM) Utilization for 3D Fiscal Cadastre. Indonesian Journal of Geography, Volume 51, no. 3, pp. 285–294.
13.   Petrie G. (2011) Current Developments in the Technology Airborne Topographic Laser Scanners. Geoinformatics, no. 1–2, pp. 34–44.
14.   Vallet J., Gressin A., Clausen P., Skaloud J. (2020) Airborne and mobile lidar, which sensors for which application?. The International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences, no. XLIII-B1, pp. 397–405. DOI: 10.5194/isprs-archives-XLIII-B1-2020-397-2020.
15.   Xianghuan L., Bennett R., Koeva M., Lemmen C. (2017) Investigating Semi-Automated Cadastral Boundaries Extraction from Airborne Laser Scanned Data. Land, no. 6 (3), DOI: 10.3390/land6030060.
Citation:
Nekhin S.S., 
Rubenok A.N., 
Babashkin N.M., 
Kovrov A.A., 
(2025) Technical regulation of laser scanning processes. Geodesy and cartography = Geodeziya i Kartografiya, 86(10), pp. 45-54. (In Russian). DOI: 10.22389/0016-7126-2025-1024-10-45-54
Publication History
Received: 30.09.2025
Accepted: 02.11.2025
Published: 20.11.2025

Content

2025 October DOI:
10.22389/0016-7126-2025-1024-10